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China - Henan Towns Water Supply and Sanitation Project : environmental assessment (Vol. 4 of 4) : Environmental impact assessment and environmental management plan

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Applying for the Loan from the World Bank WQ-2005-1-35 CEIA-2005-22 Environment Impact Assessment Report And Environment Managemeng Plan For the Water supply and water drainage project in small towns' of Henan Province El 297 VOL. 4 (Draft) January 2006 China Institute of Water Resources and Hydropower Research Henan Foreign-Loaned Project Management Office IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Contents 1OVERVIEW .....1 1.1 INTRODUCTION.1 1.1.1 Background and process of the project. 1.1.2 Purpose and characteristics of this report. 2 1.2 FOUNDATION OF DRAFTING. 3 1.2.1 Security policy of the World Bank. 3 1.2.2 Domestic laws, regulations and criterion. 4 1.2.3 Technical specifications.4 1.2.4 Development planning.4 1.2.5 Letters of entrustment.5 | 1.3 ASSESSMENT CRITERION.5 | 1.4 ASSESSSMENTTLEVEL.5 1.4.1 Assessment Level of aquatic environm ent.5 1.4.2 Assessment Level of atmospheric environm ent.6 1.4.3 .................Assessment Level of acoustic environment.:6 1.4.4 .................Assessment Level of ecological environment.6 1.5 .................ASSESSMENT RANGE AND P E R IO D .6 1.5.1 .................Project composition.6 1.5.2 .................Contents of sub-p roject.6 1.5.3 .................Spatial scale of assessment.6 1.5.4 .................Period of assessment.7 1.6 .................PRINCIPLES AND METHODS O F ASSESSM ENT.7 1.6.1 ................ Principles of a sse ssm e n t.7 1.6.2 .................Methods of assessment.8 2 PROJECT OVERVIEW ......... 9 2.1 GEOGRAPHIC POSITION ................................................ 9 2.2 COMPOSITION AND DISTRIBUTION OF THE PROJECT................................................. 9 2.3 PURPOSE AND PROFIT OF ThEPROJECT......10.............................................10 2.4 SCALEOFTHE PROJECT ................................19 2.5 CONTENTS OFLTHE PROJECT ................................. 19 2 .6 LOCATION OF THE PROJECT2 4................................ 2.7 TECHNO LOGICALFLOW.5 ................................ 2.7.1 W ater supply projects5 ................................ 6 2.7.2 Wastewater treatment projects ................................ 35 2.8 OCCUPATION, RELOCATION AND EMPLACEMENT OF THE PROJECT................................................. 35 2.9 CONSTRUCTION PLANNING .4............................................... 0 2.150 OPERATION AND MANAGEMENT OF THE P RO T ................................................P. 640 2.11 PROJECT INVESTMENT .................................................43 3 NATURAL A ND SOCIAL ENVIRONMEN T 46 23.1 GENERAL OVERVIEW OF ENVIRONMENT IN THE PROJECT AA.. 46 | ~3.1.1 Natural environment.46 | ~~I WHR 2.3_ PU PO EANIPO ITOFT EP O EC .....I.........................................I....I.....I Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 3.1.2 Social environment .............................................................. 52 3.2 OVERVIEW OF THE COUNTIES' ENVIRONMENT ............................................................ 53 3.3 STATUS QUO OF THE ENVIRONMENT SURROUNDING THE SUB-PROJECT .................... ...................... 63 4 ENVIRONMENTAL STATUS QUO ...................................................... 64 4.1 SURVEY OF THE POLLUTION SOURCE .................................. 64 4.1.1 Source of water pollution ................................... 64 4.1.2 Source of atmosphere and noise pollution ................................... 64 4.2 STATUS QUO OF THE ENVRIONMENTAL QUALITY .................................. 65 4.2.1 Water quality ................................... 65 4.2.2 Air quality ................................... 66 4.2.3 Acoustic quality ................................... 66 4.3 MAIN ENVIRONMENTALPROBLEMS .................................. 66 5 ANALYSIS OF THE LAYOUT AND SCHEMES OF THE PROJECT. .88 5.1 COORDINATION WITH HIGHER LEVELPLANNING.88 - ~5.1.1 Waterrsupplypprojects88 5.1.2 Wastewater treatment projects .89 5.2 AANLYSIS OF THE CHOICE OF THE SUB-PROJECTS IN HENAN PROVINCE .90 5.3 ANALYSIS OF THE SUB-PROJECTS SCALE .90 5.4 ANALYSIS OF THE WATER SUPPLY SCENARIOS .91 5.4.1 Analysis on water sources of pilot sub-project (taking 9 sub-projects for example) .91 5.4.2 Scheme analysis on water source of other sub-projects .110 5.5 ANALYSIS OF SITE SELECTION AND LAYOUT .115 5.5.1 Sewage treatment plant selected location rational analysis ............................................ 115 5.5.2 Factory District Arrangement Rationality Analysis ........................................... 116 5.6 ANALYSIS OF SUB-PROJECT PROCESSES .......................................... 116 5.6.1 Water Supply Project ........................................... 116 5.6.2 Sewage Treatment Project ............................................ 117 6. ENVIRONMENTAL IMPACT ANALYSIS .122 6.1 IMPACT IDENTIFICATION .................................... 122 6.2 ENVIRONMENTAL IMPACT FACTORS .................................... 122 6.2.1 Environmental inipactfactors during construction ..................................... 122 6.2.2 Environmental impactfactors during operating ..................................... 123 6.3 TABLE OF ENVIRONMENTAL IMPACT FACTORS .................................... 124 6.4 ENVIRONMENTAL PROTECTION TARGETS .................................... 124 6.5 HIGHLIGHTS OF ASSESSMENT .................................... 125 7. ENVIRONMENTAL IMPACT ASSESSMENT DURING CONSTRUCTION .138 7.1 IMPACTS ON NATURALENVIRONMENT ......................................... 138 7.1.1 Impacts on aquatic environment (orpollution to the soil) .......................................... 138 7.1.2 Impacts on air quality .......................................... 139 7.1.3 Impacts on acoustic environment .......................................... 140 7.1.4 Impacts on soil ........................................... 142 7.1.5 Impacts on vegetation .......................................... 145 7.2 IMPACTS ON SOCIAL ENVIRONMENT ......................................... 146 IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 7.2.1 Impacts on agriculture ........................................1 46 7.2.2 Impacts on cultural relics and historic sites ........................................ 147 7.2.3 Impacts on urban landscape ........................................ 147 7.2.4 Impacts on urban and rural transportation ........................................ 148 7.2.5 Impacts on inhabitants'life ........................................ 150 7.2.6 Impacts on crowd's health ........................................ 151 7.2.7 Impacts on local society and economy ........................................ 152 7.2.8 Impacts on the safety of dams and other aspests ........................................ 152 8. ENVIRONMENTAL EMPACT ASSESSMENT IN THE FUNCTION COURSE ................................ 155 8.1 WATER SUPPLY PROJECT' IMPACTS ON ENVIRONMENT .................................................................. 155 8.1.1 Impacts on water resources and ecological environment ........................................ 155 8.1.2 Impacts on aquatic and acoustic environment & handling of Solid Waste .157 8.1.3 Impacts on inhabitants'production and life .165 8.1.4 Impacts o n land utilization .168 8.1.5 Impacts on wastewater increase .169 8.1.6 Impacts on crowd health (environmental risk analysis) .172 8.2 IMPACTS OF THE WASTEWATER TREATMENT PROJECT ON ENVIRONMENT ..................................... 173 8.2.1 Inmpacts of the discharge of wastewater on aquatic environent .173 8.2.2 Impacts of the sludge on soil and aquatic evironment .176 8.2.3 Impacts on acoustic and air quality .178 8.2.4 Impacts on land utilization .181 8.2.5 Impacts on crowd's health (environmiental risk analysis) .181 8.3 IMPACTS OF THE EXTERNAL ENVIRONMENT ON THE PROJECT .................................. ................ 182 8.3.1 Analysis on the potential pollution source of the water source & water source protection for WSP182 8.3.2 Potential water quality pollution of the abandoned water well ............................................ 187 8.3.3 Natural disaster risk analysis ............................................ 187 9 ENVIRONMENTAL MANAGEMENT .............................. 188 9.1 ENVIRONMENTAL MANAGEMENT INSTITUTIONS ........................................ 188 9.1.1 Management objectives .................................. 188 9.1.2 Working range .................................. 188 9.1.3 Structural establishment .................................. 188 9.1.4 Duties .................................. 190 9.2 ENVIRONMENTALPROTECTION PLAN ........................................ 193 9.2.1 Feasibility study and design period .................................. 193 9.2.2 Construction period .................................. 193 9.2.3 Operation period .................................. 193 9.3 ENVIRONMENTAL SUPERVISION PLAN ...................................20..................... 210 9.4 ENVIRONMENTALMONITORING PLAN ...................................................................... 211 9.4.1 Purposes of Monitoring .......................... 211 9.4.2 Organizations .......................... 211 9.4.3 Monitoring plan .......................... 212 9.5 Reporting system .......................... 215 9.6 STAFFTRAINING ..................................................2....................... . .............. ....... 217 9.7 ESTIMATION OF ENVIRONMENTALPROTECTION INVESTMENT ......................................... 217 IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 10 PUBLIC CONSULTATION & INFORMATION DISCLOSURE ..................................................... 221 10.1 PUBLIC CONSULTATION .221 10.1.1 Objective.221 10.1.2 Public consultation During The First Stage .221 10.1.3 Public consultation During The Second Stage .222 10.2 INFORMATION DISCLOSURE .240 11. CONCLUSION ....... 244 11.1 CONCLUSION OF LAYOUT AND SCENARIOS ANALYSIS .244 11.1.1 Conclusion on the Coordination Analysis of Planning .244 11.1.2 Conclusion on the Rationality Analysis of Layout .244 11.1.3 Conclusion on the Rationality Analysis of Scale and Technology Selection .244 11.1.4 Rationality Analysis on WaterSource Selection .244 11.2 CONCLUSION OF ENVIRONMENTAL IMPACT ASSESSMENT DURING CONSTRUCTION .245 11.3 CONCLUSION OF ENVIRONMENTAL IMPACT ASSESSMENT DURING OPERATION .246 11.4 ENVIRONMENTAL BENEFTS .248 11.5 CONCLUSION ON PUBLIC CONSULTATION .248 11.6 COMPREHENSIVE CONCLUSION .............................................................................................. . 249 IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject TABLES Table 2-1 Water supply profit schedule for subitems .1 Table 2-2 Engineering Scope Schedule .20 Table 2-3 Locations and Constitution of Water Supply Sub-project .25 Table 2-4 Constitution of Wastewater Treatment Sub-project .34 Table 2-5 General Situation of the Arrangement of the project .35 Table 2-6 Land occupation by water supply sub-projects .36 Table 2-7 Land occupation by wastewater treatment .37 Table 2-8 Items influenced by water plants, water source and pipings .37 Table 2-9 Items influenced by WWTP and pipings .38 Table 2-10 Manpower quota of water supply project .41 Table 2-12 Investement of sub-projects .44 Table 3-1 Overview of the topography and geomorphology in sub-project areas .46 Table 3-2 Drainage area situations at which sub-projects locate .49 Table 3-3 Schedule of the overview of environment in counties where the sub-project lies .54 Table 4-1 Status quo of the pollution source in the water source of each WSP .68 Table 4-2 Status quo of the pollution source of wastewater receiving body in each WSP .73 Table 4-3 The Status Quo of Water Environment Quality in theWater Supply Sub-project .74 Table 4-4 The Status Quo of the Water Environment Quality in the Wastewater Treatment Sub-project 81 Table 4-5 The Status Quo of the Air Quality and Noise Quality in the locations of WSP 82 Table 4-6 The Stautus Quo of the Air and Noise Environment Quality in the location of the Wastewater Treatment Sub-project ..86 Table 4-7 The General Situation of the Sub-project's Surface Water Quality .87 Table 5-1 Data Sheet of Water Source Type and Basic Situation of Each Water Supply Project . 11 Table 5-2 Pass in and out water qualities and processing rate of each sub-project .119 Table 5-3 Each sub-project technics choosing and treatment deepness .121 Table 6-1 Environment impact identification during the construction stage .126 Table 6-2 Environment impact identification during the operating stage .126 Table 6-3 Water environment protection targets of water supply sub-project .127 Table 6-4 Water environment protection targets of sub-projects of sewage treatment .132 Table 6-5 Protection targets of air and acoustic environment of WSPs .133 Table 6-6 Protection targets of air and acoustic environment of WWTPs .135 Table 6-7 Protection targets of air and acoustic environment of the pipe networks .137 Table 6-8 Protection targets of social environment .137 Table 7-1 Various wastewater of construction and discharge of rubbish .138 Table 7-2 Noise intensity of several construction machines .140 Table 7-3 Result of noise attenuation calculation of several main construction machines (vehicles) 141 Table 7-4 Analysis of the impacts of water loss and soil erosion in the project .145 Table 7-5 Analysis of project construction's influence on traffic (take 9 field inspection sub-projects as examples) .149 Table7-6 Details of reservoirs and intake works for the 5 sub-projects taking reservoir as water resource 153 Table 8-1 Pollutant discharge amount and disposition methods in the operation of each WSP ............ 159 Table 8-2 Change of farmland per capita due to the Permanent land occupation .................................. 168 IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Table 8-3 Schedule of the Construction of WWTP in Counties Where the Sub-WSP Lies ................... 169 Table 8-4 Table of the reduction of pollutant in the process of each wastewater treatment subproject. 174 Table 8-5 Output-water quality of each wastewater treatment sub-project ............................................ 175 Table 8-6 Control standard of pollutants in agricultural sludge (unit: mg/kg) ....................................... 177 Table 8-7 Table of impacts on air and acoustic environment quality in the process of each sub-WWTP 180 Table 8-8 Change of farmland per capita due to the Permanent land occupation .................................. 181 Table 8-9 Potential pollution sources of water source of WSP (groundwater source) ............ ............... 185 Table 9-1 Establishment of environmental management institutions ................................. ................... 189 Table 9-2 Managerial System for Environmental Protection ................................................................ 191 Table 9-3 Instance of Managerial System for Construction ................................................................ 192 Table 9-4 Feasible Study and the Environment Protection Measure in the Devising Period ................. 194 Table 9-5 The Environment Protection Measures during the Construction Period ................................ 196 Table 9-6 Operation Period's Environment Protection Measures ....................................................... 202 Table 9-7 Establishment and protection of the source hygeian protection belt ...................................... 205 Table 9-8 The Protective Measures for Surface Water Source Reserve ................................................. 207 Table 9-9 Protective measures for groundwater source reserve ............................................................. 208 Table9- 10 The plan for project environment protection supervision ...................................................... 210 Table 9-11 Air quality monitoring plan ................................................................ 212 Table 9-12 Noise monitoring plan ................................................................ 212 Table 9-13 Monitoring plan for the source water quality of the water-supplying projects ...................... 213 Table 9-14 Water quality monitoring plan of wastewater treatment project ............................................ 214 Table 9-15 Air quality monitoring plan of the wastewater treatment project .......................................... 214 Table 9-16 Sludge s monitoring plan for the wastewater treatment project ............................................. 215 Table 9-17 List of training plan of the environmental protection management staff ............................... 217 Table 9-18 Single sub-projects environmental protection estimation (on average) ................................. 219 Table 9-19 Environmental protection investment estimation of the general project (10,OOORMB) ... 220 Table 10-1 Public Questionnaire on the Environmental Impact of World Bank Loan Project ......... ....... 224 Table 10-2 Sub-project public consultation and statistic result of the survey .......................................... 227 Table 10-3 Information Disclosure of Sub-project ................................................................ 241 IWHR 1 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject FIGURES Figure 2-1 Schematic of the composition of the project. 9 Figure 2-2 Underground water treatment technological flow .39 Figure 2-3 Surface water treatment technological flow .39 Figure 2-4 Orbal dioxidation channel wastewater treatment technological flow .39 Figure 2-5 A/O/O activated sludge process water treatment technological flow .39 Figure 2-6 The setup of management institution of project operation .43 Figure 3-1 Schematic of the environmental condition around the sub-project .63 Figure 9-1 The system of environmental management and supervision .210 Figure 9-2 Environment monitoring organization .212 Attached figures Attached figure 1 Geographic position of the projects Attached figure2 Location plan of the water supply project (surface water source) Attached figure3 Location plan of the water supply project (ground water source) Attached figure4 Catalogue plan of topography in the project area as well as the water source of the water supply project Attached figureS Distribution plan of the water system in the project region IWHR Envirmnment Impact Assesment Report and Environment Management Plan of Henan water supply preject Appendixes Appendix A Drafting and inspection of EIA table of sub-project Appendix B Assessment standard of sub-project Appendix C Guidelines of the drafting of EIA table of sub-project Photographes Annex Annexl Commission of EIA Annex2 Information disclosure Annex2-lInformation disclosure of Yiyang water supply project and EIA (Luoyang Daily, June 14, 2005) Annex2-21nformation disclosure of Runan water supply (Runan TVXstation, May14, 2005) Annex2-31nformation disclosure of Mengjin wastewater treatment and EIA (Luoyang Evenming Paper March 16, 2005) Annex3 EIA approval Annex3-1 Approval of Suiping water supply EIA (EPB of Zhumadian municipality, Henan province, Oct 2003) Annex3-2 Approval of Songxian wastewater treatment EIA (EPB of Henan province, April 2004) Annex4 Sludge reception guarantee of wastewater treatment (Songxian wastewater treatment) Annex5 Cultural reilics guarantce or Runan county Tianzhongshan (Runan county watcr supply project) IWHR Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject environment, Henan Province government stipulated that, before 2007, each county should at least build one wastewater plant. At present, each county is striking its brain seeking for various fund channels to carry on the construction preparations. This project, taking the water supply as its main project, has bought into line with 5 wastewater treatment projects. According to the state's legal rules as well as World Bank procedure request, the items of basic construction must carry on the EIA in the FSR stage. In accordance with the requirementments of state's law, an EIA study must be carried out for each 42 independent sub-projects. Entrusted by Henan Province Overseas Loan Project Management Office, China Institute of Water Resources and Hydropower Research (IWHR) has undertaken the drafting of the integrated EIA report of this project. The integrated report, based on the EIA report table of each sub-project and according to the ' Notice on the strengthening of the EIA Management Work of Loan Constuction Project in International Finance Corporation (1993)' issued together by National Environmental Protection Bureau, Planning Committee, Ministry of Finance and People's Bank of China, put forward the modification and improvement suggestions to the finished monomer EIA report table in the drafting period, and bring forth the technical guidelines and requirements to the monomer EIA report table which is under drafting or is planned to draft. 1.1.2 Purpose and characteristics of this report The principle of drafting The 42 monomer EIA reports based on this integrated report have different drafting progress: some projects (taking up around 1/3 of the total) have ended the drafting ealier and have been reported to the Municipal Environmental Protection Burreau in Henan Environmental Protection Bureau for examination and approval in 2003, according to the state's legal procedures. And the examination and approval units have come up with relative suggestions. The report table is entitled the legal effect. Some other part of the projects started the prophase research in a later period. They started relative research only when the project was brought into World Bank's loan, and the drafting of its EIA report table is simultaneously undergoing with the integrated report which will be completed in 2005 successively. And still others haven't started EIA work when the integrated report is under drafting. The above-mentioned reality brought difficulties to the drafting of the integrated report to some extent. To better complete the integrate report, after the full discussion with the World Bank experts and French consultant organizations, this report, based on the above mentioned objective situations, adopts the following drafting principles in the course of environmental impact assessment: 1) The EIA report table early completed and already approved is taken as the basic material of this report. This kind of EIA report table doesn't take into consideration the World Bank loans when drafted, and its drafting was carried out according to relative requirements of the state, not taking into consideration of the standard and requirements of the World Bank. For example, aspects such as public consultation, information disclosure and environment management are relatively insufficient. In view of this, this report proposed supplement suggestion to the EIA of sub-project, and meantime the sub-project has also submitted the relative supplement material. 2) To EIA report tables of sub-project which are drafted at the same time of drafting of this report, technical guidelines and requirements are put forward to them according to the related standard and the request of EIA in World Bank. The EIA report table completed and finally approved by the domestic examination and approval institution will be taken as the basic material of this report. 3) To sub-projects which haven't yet been carried on the EIA in the drafting of this report, the guidelines for the drafting of EIA report table are provided so as to ensure that the EIA will be completed according to the related request of the World Bank. IWHR 2 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Purpose of the drafting The drafting purposes of this repot are as follows: To provide to the World Bank one piece of report that assesses the project's environmental impact as well as its protection measures from a universal perspective (including environmental management plan); To provide technical guidelines (Appendix C) to the sub-projects which haven't completed the EIA when this report is submitting to the World Bank as well as any sub-project that might be added later, in order to ensure its completion of EIA as per relative requirements of the World Bank and to minimum the project's impact on the environment. EIA report table of the sub-project based on the drafting Up till the hand-in time of this report, all of the 42 EIA report tables. as the based document of the integrated FEA report, have been completed. And 41 tables have been approved, except for the table of the water supply prolject of Xinyang Yangshan District is to be approved. As to the details of the drafting and approvals of the EIA of sub-project, see Appendix A. Composition of the EIA documents There are 3 types of EIA documents relating with this project: The Integrated EIA & EMP (hearinafter refer to as integrated report) (Chinese edition); The Integrated EIA & EMP (hearinafter refer to as integrated report) (English edition); The Monomer EIA (also refer to as EIA of sub-project) (Chinese edition only). This report provides the World Bank with the English edition. Procedure for examination and approval The above-mentioned EIA documents have different procedures for examination and approval, among which the monomer EIA only has the Chinese edition and will be examined and approved by Henen Environmental Protection Bureau or the local Municipal Environmental Protection Bureau (each sub-project is mutually independent). In accordance with the laws and regulations, the Chinese edition in the integrated report will be examinated and approved by related Environmental Protection Bureaus. The English edition of the integrated report submits to the examination and appoval of the World Bank. 1.2 Foundation of Drafting 1.2.1 Security policy of the World Bank After careful selection, the following policies of the ten security policies of the World Bank are brought into the procedure of EIA (environmental Impact Assessment): --Environmental assessment (OP/BP/GP4.01) --Natural habitat (OP4.04) --Cultural heritage (OP4.11) --Involuntary Resettlement (OP4.12) -- Safety of Dams (01'4.37) I WHR 3 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Besides, relevant document "water resource management" (OP4.07) of the World Bank is also going to be applied. 1.2.2 Domestic laws, regulations and criterion Law of the People's Republic of China on Environmental Protection, 1989; Law of the People' s Republic of China on Environmental Impact Assessment, Oct. 2002; Rules and Regulations of Environmental Management of the Construction Items (State Department No.253 Documentation), Nov. 1998; Water Law of the People' s Republic of China, Oct. 2002; Law of the People' s Republic of China on Soil and Water Conservation, June. 1999 Law of the People' s Republic of China on Water Pollution Prevention, May 1984; Law of the People' s Republic of China on Air Pollution Control, June, 1988; Law of the People' s Republic of China on Environmental Noise Pollution, June 1996; Law of the People' s Republic of China on the Prevention and Control of Environmental Pollution by Solid Waste, April 1996; Law of the Preservation of Cultural Relics of the People' s Republic of China, Oct. 2002; Notices on Promoting the Management of EIA of the Loan Construction Items of the International Finance Corporation, 1993 1.2.3 Technical specifications Technical guidelines for EIA Guiding Principles (HJ/T2.1-2.3-1993); Technical guidelines for EIA Surface water environment (HJ/T2.4-1995); Technical guidelines for EIA Acoustic environment (HJ/T2.4-1995); Technical guidelines for EIA Atmospheric environment (HJ/T2.2-1993); Technical guidelines for EIA Ecological environment of natural resources development (HJ/T19-1997); Technical specifications of the conservation program of the development and construction items on water and soil conservation (SL204-98). 1.2.4 Development planning Tenth Five-year Plan for National Economy and Social Development in Henan Province; Tenth Five-year Plan in Henan Province, National Economy and Social Information Program; Tenth Five-year Plan in Henan Province, Ecological Construction and Environmental Protection Program; Tenth Five-year Plan in Henan Province, Population, Employment and Social Security Program; Tenth Five-year Plan in Henan Province, Water Conservancy Development Program; Tenth Five-year Plan for Water Pollution Prevention in Huaihe River Basin. IWHR 4 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 1.2.5 Letters of entrustment Letters of entrustment of the EIA (Appendix A); 1.3 Assessment Criterion The involved environmental standards are as follows: Environmental Quality Standards: Environmental Quality Standard for Surface Water. (GB3838-2002), Quality Standard for Ground Water (GB/T14848-3), Water Quality Standard for Drinking Water Resources (CJ3020-93), Sanitary Standard for Drinking Water (GB5749-85), Ambient Air Quality Standard (GB3095-1996) and Standard of Environmental Noise of Urban Area (GB3096-93). Pollutant Discharge Standards: Integrated Wastewater Discharge Standard (GB8978-96), Emission Standard of Air Pollutants for Coal--burning Oil-burnig Gas-fired Boilers (GB13271-91), Noise Limits for Construction Plant (GB 1223-90), Standard of Noise at Boundary of Industrial Enterprises (GB 12348-90), Control standards for Pollutants in Sludges from Agricultural Use (GB4284-84) and Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant (GB 18918-2002). Since the EIA of each sub-project is carried out independently by the qualified EIA units entrusted by the property units. The assessment criteria are determined by the assessment units according to the environmental conditions of the legal address of the projects and national guidelines of environmental impact assessment. These criteria also win the approval and affirmation of the Environment Protection Bureau of the province (or the city). The general unit filing the statements reviewed the assessment criteria adopted by the environmental impact statements of these sub-projects. They thought part of the criteria is reasonable and part of them needed complementation. The assessment criteria and normal values adopted by each sub-project is to be seen in Appendix B. In the EIA report table of part sub-projects, the same standard is applied in the EIA of noise. It didn't make any difference between the rural areas and the urban areas. It is advised to apply different standards in different areas. For example, in rural areas, to apply Class-I standard of Standard of Environmental Noise of Urban Area (GB3096-93), in downtown streets, where sensitive items are located along, to apply Class I or II standard (for residence and education areas, to apply Class I, for mixture areas of residence, commerce and industry, to apply Class II).. 1.4 Assessment Level According to the relative stipulations of the World Bank, the environmental impact assessment of this item is determined as Category B through carrying out an environmental screening from the type, position, sensitivity, scale, the feature and cope of potential environmental impact. According to the defining principles of environmental assessment impacts on the assessment Level in "the Technical Guidelines for Environmental Impact Assessment" (HJ/T 2.1-2.3-93), and according to the fact that the sites of the sub-projects are widely divided, following assessment Levels are brought up. 1.4.1 Assessment Level of aquatic environment Assessment Level of aquatic environment is determined by the wastewater discharge amount of the construction items, the complexity of wastewater quality, the scale of the inhaled waters and the demands of water quality. The sub-projects of this project are mainly water supply projects. The finished project itself doesn't discharge wastewater except a very small amount of wastewater during the construction period. However, considering the fact that this project is mainly water supply project, the impact of water quality on the water source site during IWHR 5 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject the operating period is the key point of assessment. So the water environmental assessment Level is determined as Category II. 1.4.2 Assessment Level of atmospheric environment The finished project doesn't discharge exhaust. However, during the construction period, the exhaust discharge of the machinery and vehicles and the flying dusts on the roads will have slight effect on local atmospheric quality. The affecting factors are mainly PM1o. Atmospheric EIA is drawn up as Category III. 1.4.3 Assessment Level of acoustic environment According to Technical guidelines for EIA Acoustic environment HJ/T2.4-1995, the Level of environmental noise impact assessment should be determined according to the classification of the noise source, the source strength and the acoustic environment of the place where the project is located and other factors. During the operating period, the project doesn't produce strong noise source. The noise harassing the people is mainly produced during the operating period. That is, the noise produced by the construction machinery and vehicles will have some effects on nearby residents. The noise impact is only temporary,(only during the construction period) . Taking all these factors into account, the assessment Level of acoustic environment is determined as Category III. 1.4.4 Assessment Level of ecological environment This project is composed of 42 sub-projects. All of the sub-projects are in a small scale and are independent from other. Generally speaking, the project's major impact on ecological environment is the occupied farmland. But the places of the project location are in or near the counties, and there are no precious animals or plants or any other ecologically-sensitive protected targets. Therefore, the project will not have any adverse effect on the regional biotic community. According to the classification standards of "Technical guidelines for EIA Ecological environment of nature resource development"(HJ/T19-1997), ecological environmental assessment can be determined as Category III. 1.5 Assessment Range and Period 1.5.1 Project composition The project is composed of 42 sub-projects (including 37 water supply projects and 5 wastewater treatment projects). 1.5.2 Contents of sub-project Water Supply Project includes water diversion project, water transfer project, Water treatment project, and the construction of water distributing pipes and wastewater pipe network. It also includes gathering of soil and rocks, the discarding of residues , the camp building, the relocation of occupied land and the resettlement of affected residents which are relative to these projects. Wastewater Treatment Project includes the construction of wastewater treatment works and wastewater pipe network. It also includes the construction of soil and rocks stock house and the field for discarding residues, the camp building relative to these sub-projects, and the allocation of occupied land, the resettlement of affected residents and disposal and transfer of sludge. 1.5.3 Spatial scale of assessment Spatial scale of assessment, as one of the assessed targets, varies with the difference of environmental factors. According to the difference of environmental factors, the respective territorial scope is determined as follows: IWHR 6 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 2.3 Purpose and Profit of theProject (1) Improving water-furnishing ability of the counties to solve the insufficiency of water furnishing. This is a basic construction program mainly for the cities' water furnishing. Many problems remain in the 37 cities and counties in which all its 37 water-furnishing sub-project locates. There water furnishing devices are not advanced, water furnishing is insufficient and the water pipe system covers too little area. The high speed of population growth made the problem of water supply more and more urgent. After the project is built, the newly added water supply capacity will be 765.000t, providing industrial and domestic water 279,225.000t/a, which can be used to improve the status quo of water utilization for 3,892,400 inhabitants in the county and solve the water utilization for 5,394,700 inhabitants in recent period (2010) as well as the running water supply to the industry and inhabitants in the project area for a long term. It will provide an important guarantee for the sustainable development of the county's economy in Henan Province. As to the water supply profit of each sub-project, see Table 2-1. (2) Providing fine quality water and improving the inhabitants' drinking health According to the site survey as well as the materials provided by each county, the running water penetration rate is low, with individual (for example, Yuanyang in Xinxiang City) has no water works up till now. There are a great number of self-prepared wells in organs, schools and hospitals in each county, and still some families take drinking water from the hand-pumped wells. The utilization of self-prepared wells, on one hand, results in disorder exploitation, and on the other hand, the pumped shallow-layer groundwater suffers pollution to different degrees due to the human's activities on the surface, and direct drinking of this water without any processing will be harmful to the inhabitant's health. There are drinking-water endemics caused by geologic origin and water pollution in part of the project's area. For example, according to the social assessment report, underground water in the area of Mengzhou, Xinxiang, Fengqiu and Yuanyang of Yubei, which is belong to Yellow River alluvial plain, contains over standard nitrate (which is mainly shallow-layer groundwater). This area always is the high incidence area of oesophagus cancer and gastric cancer. Several wells' water tastes salt and astringent. In Kaifeng, Zhoukou and Shangqiu of Yudong plain, as for its cause of formation, some areas are high-fluorine water area because their shallow-layer groundwater contains much more fluorine and alkali. Usually, many people have decayed teeth when they enter full mature, and the ratio is 60%. Cities and counties all find one or two Kaschin-Beck disease, dental fluorosis and etc. According to the confirmation of county level board of health, the main reason is that shallow-layer groundwater contains much more fluorine. For example, in Tongxu, fluoride in shallow-layer groundwater is more than 2.5 times beyond the standard. After the check of the cases in hospitals these years, it is found that the incident rate of those people who do not drink tap water is much higher than those who drink tap water121. Thus it can be seen, in the project area, there are many phenomena where the inhabitants use the polluted shallow-layer groundwater pumped from the self-prepared wells of the ground water doesn't conform to the drinking water standard caused by the geological structure, seriously threatening the health of the inhabitants. The inhabitants have high calls for the exploitation of new water source and the promotion of the water quality, and meanwhile, the government has already paid much attention to these problems. IWHR 10 Env4ronmctt Impact Asscsmont Report and EnWronmenfManagement Plan ofHe.ui fntpr vipplVyprejeet Table 2-1 Water supply profit schedule for subitems Water supply quantum in the county Estimnated (10 thousand Vd) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply thousand supply (2010) person) Weishi 0.7 3.5 4.2 16 * Domestic water * Exsited waterworks should be maintainned and reserved * Enterprises and units a Till 2008, self provided wells in layout area should be halted * Service industry * Watering for the virescence of the road Tongxu 0.8 3.5 4.3 18 * Domestic water * Exsited waterworks should be maintainned and reserved * Enterprises and units a Till 2005, self provided wells in layout area should be halted * Service industry * Industrial Lankao 0.5 3.0 3.5 16 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (20%) * Self provided wells should be halted gradually Kaifeng 1.8 2.5 4.3 10.8 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (25%) * Self provided wells should be halted gradually * City planning virescence * Fire protection Qixian (Qi) 0. 6 2. 5 3. 1 15. 5 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (10%) * Till 2008, domestic self provided wells should all be halted, and * Enterprises and units part of industry self provided wells should be halted * Virescence * Service industry Mengjin 1.2 2 3.2 8.5 m Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (40%) * Till 2010, 40% industry self provided wells, domestic waterself * Enterprises and units provided wells should be halted IWHR 11 Environ,ment Inpact Assesment Report and EnWronrmnt Management Plan of Flenrn ,n,fpr vlpply prejert Water supply quantum in the county Estimated (10 thousand tid) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply thousand (2010) person) * Virescence * Service industry Yiyang 1.25 2.5 3.75 14.5 a Domestic water * Exsited waterworks should be maintainned and reserved * Industrial * Enterprises and units a Virescence * Service industry Songxian (Song) 0 3.0 3.0 12 * Domestic water * Exsisted waterworks should be closed * Industrial (30%) * Till 2010, 30% industry self provided wells,domestic waterself * Institutional, service industry (80%) provided wells should be halted a Virescence Baofeng 0.8 1.5 2.3 13 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (20%) * Self provided wells should be halted gradually * Institutional, service industry (70%) a Virescence Jiaxian (Jia) 0.65 2.0 2.65 11 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (40%) * Till 2010, 40% industry self provided wells,domestic waterself * Enterprises and units provided wells should be halted * Virescence * Service industry Lushan 0.5 3.0 3.0 14.2 * Major domestic water (80%) * Since it has no water supplu plant and the tap water CO. supply the (groundwater * Industrial (25%) groundwater directly to peoply, the wells will be closed till the supplied * Major enterprises and services units new WS work. directly) (80%) * Self provided wells should be halted gradually IWHR 12 E,.vi,u,,,,ti ,Ul1m.t .,A--...,e,,il Repo, t a,td Envi,umninent Man.age,nvnt PkIn of I'nMn wvater supply preject Water supply quantum in the county Estimated (10 thousand t/d) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilties Status quo of water (2010 y/10 ed water water supply supply thousand supply (2010) person) Xinxiang 0 2.0 2.0 8 * Domestic water * Till 2010, 15% industry self provided wells,domestic waterself * Industrial (15%) provided wells should be halted. * Institutional (70%)virescence Yuanyang 0 3.0 3.0 14.09 * Domestic water * Till 2010, 30% industry self provided wells,domestic waterself * Industrial (30%) provided wells should be halted. * Institutional (70%) * Virescence Fengqiu 0.5 2.5 3.0 10 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (30%) * Till 2010, 30% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Xiangcheng 0.6 2.0 2.6 15 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (15%) * Till 2010, 15% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Shanxian (Shan) 0.2 2.0 2.2 15 a Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (15%) * Till 2010, 15% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Ylma 1.3 2.0 3.3 17.08 * Domestic water * Exsited waterworks should be maintainned and reserved * Industry * Till 20 10,domestic waterself provided wells should be halted * Institutional (70%) * Virescence Suixian (Sui) 0.5 2.0 2.5 8.03 * Domestic water * Exsited waterworks should be maintainned and reserved IWHR 13 E,vivumntnt Ienimtytt IAsschnrt Rcport and Environmront Management Pkln ofHenan water suppyly prPjt Water supply quantum in the county Estimated (10 thousand tid) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply thousand (2010) person) * Industrial (30%) a Till 2010, 30% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Xiayi 0 3.0 3.0 15 * Domestic water a Exsited waterworks should be maintainned and reserved * Industrial * Till 2010, domestic waterself provided wells should be halted * Institutional (70%) * Virescence Zhecheng 0.6 2.0 2.6 10 * Domestic water * Exsited waterworks sbould be maintainned and reserved * Industrial (20%) * Till 2010, 20% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Dengzhou 2.5 3.0 5.5 20.01 a Domestic water a Exsited waterworks should be maintainned and reserved * Industrial (8%) a Till 2010, 8% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Xinye 1.2 2.0 3.2 16.47 * Domestic water * Exsited waterworks should be maintainned and reserved * Industry * Till 2010, all the industry self provided wells, domestic * Institutional (70%) watershould be halted. * Virescence Sheqi 0.7 2.0 2.7 8.5 * Domestic water a Exsited waterworks should be maintainned and reserved * Industrial (30%) * Till 2010, 30% industry self provided wells,domestic waterself * Institutional( 70%) provided wells should be halted * Virescence Xichuan 0.5 2.5 3.0 20 * Domestic water * Exsited waterworks should be maintainned and reserved IWHR 14 E,iv.,u,wwut IntipaaAsesnzent Rcport and Environment Managomnent Plan of Henan ivater supply preject Water supply quantum in the county Estimated (10 thousand tVd) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply thousand supply (2010) person) * Industrial (8%) * Till 2010, 8% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Queshan 1.5 1.5 3.0 12 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (30%) * Till 2010, 30% industry self provided wells,domestic waterself * Institutional (80%) provided wells should be halted * Virescence Xincai 0.5 2.0 2.5 12 * Domestic water a Exsited waterworks should be maintainned and reserved * Industrial (30%) * Till 2010, 30% industry self provided wells,domestic waterself * Institutional (80%) provided wells should be halted * Virescence Xiping 0.5 2.0 2.5 12 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (10%) * Till 2010, 10% industry self provided wells,domestic waterself * Institutional (80%) provided wells should be halted * Virescence Zhengyang 0.84 1.5 2.35 12 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (20%) * Till 2010, 20% industry self provided wells,domestic waterself * Institutional (80%) provided wells should be halted * Virescence Suiping 0.9 3.0 3.9 12 * Domestic water * Exsited waterworks should be maintainned and reserved * Enterprises and units * Till 2010,domestic waterself provided wells should be halted * Service industry * Virescence Runan 0 3.0 3.0 14 * Some domestic water (85%) * Exsisted waterworks should be closed IWHR 15 Envj,rurn,ttuft lr,,puI A-,,le,a Rep-, t tad Envihnnizent AMiangcmcnt Plan of Henan uwater Aupply preject Water supply quantum in the county Estimated (10 thousand tVd) water supply Total population Project county Newly-add Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply thousand supply (2010) person) * Industrial (30%) * Till 2010, domestic waterself provided wells should be halted Shenqiu 0.8 2.0 2.8 20 * Some domestic water (30%) * Exsited waterworks should be maintainned and reserved * Industrial (20%) * Till 2010, 20% industry self provided wells,30%domestic waterself provided wells should be halted Xiangcheng 2.65 3.0 5.65 43.37 * Domestic water * Exsited waterworks should be maintainned and reserved * Institutional (70%) * Till 2010,domestic waterself provided wells should be halted a Virescence Minggangtown,X 0.3 1.0 1.3 15 * Domestic water * Exsited waterworks should be maintainned and reserved inyang City * Industry * Till 2010, 15 thousand t/d self provided wells shoule be reserved. * Institutional (80%) * Virescence Xixian (Xi) 0.8 2.0 2.8 14 * Domestic water a Exsited waterworks should be maintainned and reserved * Industrial (25%) * Till 2010,25% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Luoshan 2.9 1.5 4.4 15.23 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (30%) * Till 2010,30% industry self provided wells,domestic waterself * Institutional (70%) provided wells should be halted * Virescence Xincheng 0 5.0 5.0 22 a Domestic water * Use exsisted waterworks District, Xinyang City Mengzhou 0.8 3.0 3.8 10.8 * Domestic water * Exsited waterworks should be maintainned and reserved * Industrial (25%) m Till 2010,25% industry self provided wells,domestic waterself IWHR 16 Er,lvi,uL,,ul,Lt hnp( A Re,o,tr anl dEviruon,n t Afantgcnwnr Plwn of Honan wvater suk'pypreject Water supply quantum in the county Estimated (10 thousand t/d) water supply Project county Newly-add Total population Water supply object Disposition of original water supply facilities Status quo of water (2010 y/10 ed water water supply supply supply thousand (2010) person) * Institutional (70%) provided wells should be halted * Virescence IWHR 17 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject After the building of this project, many sub-projects will collect the domestic water which was originally taken from the polluted or high-fluor and high-nitrate shallow-layer groundwater and will provide the purification process to it until it satisfies the sanitary standard for drinking water. For example, in Yuanyang the manganese and arsenic in shallow-layer groundwater exceeds the allowed figure, and deep-layer groundwater is planned to exploit; in Tongxu, the fluorine in Sui shallow-layer groundwater exceeds the allowed figure, and deep-layer groundwater is planned to exploit; in Taikang, nitrate in shallow-layer groundwater exceeds the allowed figure, the fluorine in intermediate deck ground water exceeds the allowed figure, and deep-layer groundwater is planned to exploit. Therefore, this project plays an important role in improving the life quality in the county and guaranteeing the inhabitant health. (3) Improving or perfecting the status quo of the water supply and drainage, enhancing the city water supply penetration rate and the wastewater collection rate, saving the water resources and protecting the region alenvironment. In the project area, the fundamental condition of the water supply in the county is generally weak, the current supply scale is small, the facilities are miserable; the water distribution pipe network is aging and unreasonably laid out; running, emitting, dropping, leaking and other phenomenon of water waste are extremely serious. Disorder exploitation to ground water using self-prepared wells not only wastes the water resources and pollutes the surface water, but also results in 'funnel' phenomenon to the ground water in partial areas. In addition, all the counties in the project area have no wastewater treatment plants; the surface water is seriously contaminated and has already had an impact on the water quality of the shallow-layer groundwater. The above-mentioned situations seriously inhibit the economic development and the improvement of peope's life in this area. The construction of this project will improve the status quo of the supply and drainage systems, the enhancement of penetration rate and wastewater collection rate, economic utilization of the water source as well as the environmental protection. 4) Through the construction of infrastructure, investment environment is improved, channels of financial investment are opened up, and employment opportunity is increased, highly speeding up the industrialization and urbanization of the region, and promoting the coordinated development between mid-China city group and urban economy. It is also the foundation of the full construction of Henan affluent society and its grow-up. At present, China is in the period of high-speed development in economy. The construction of big, middle and small cities is at the fast development condition. From the aspect of long range, rational exploitation and use of natural resources and environment protection are a strategic question for the sustainable development of national economy and the society. With the quickening process of urbanization and the enlarging scale of cities, the city has an increasing demand for water resources. At present, the urbanization level of our country is 36%. It is forecasted according to relative research that the urbanization level will reach 60% and the city dwellers will reach 0.96 billion, twice of the current city dwellers. Therefore, there is still much development space for urbanization. The water supply project is the essential condition for the development of cities and belongs to infrastructure. With the development of urbanization, the demand of the urban water supply works for the utilization of water resources will also increase. In the coming 50 years, the ratio of city water supply to the total water supply will increase from 25% to 395. In the middle of this century, the water supply of our country will increase by 170 billion tons, and 140 billion will be used for city drinking water. That is, the newly increased 82% water supply is city water supply. The future water supply will show such features: 1) with the quick development of city water supply industry, the ability of water supply will also increase. 2) The construction of water supply facilities arouse great focus of governments of all levels and the investment on water supply facilities will increase continuously. 3) IWHR 1 8 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject The structure of city drinking water will change and it is forecasted that water for production and drinking water will account for 50% of the total water supply. 4) The increase of city water supply shifts to the growth of quality. The orientation of the water supply projects of middle and small cities in Henan Province meets with the developing trends and the current situations of water supply of the whole country. From the aspect of general development of Henan province, the meanings of this water supply and drainage project are as follows: Cl The construction of this project is the requirement of the building of an affluent society and the realization of grow-up of mid-China. According to the policy of the central government and its actual situation, the government of Henan province puts forward The Program of Fully Building Affluent Society of Henan Province[3]. Its aim is to take the road of industrialization, urbanization, and modernization of agriculture, to make driving effect as the cock of mid-China city group, to stand in the front of the Middle West in China, and to realize the grow-up of mid-China. Apparently, this project can improve the production and living condition of the local, optimize economic development and investment environment, increase the attraction to outside fund, people and materials, strengthen competitive power in economy among different areas, and greatly support its grow-up. EJ It is the requirement to speed up the process of urbanization. In 2003, the government of provincial committee put forward The Decision of Speeding up the Process of Urbanization (No. 9 [2003]) 14] Its aim is to speed up the construction of mid-China city group, which takes Zhengzhou city as the center. Along with urbanization, the population concentrates rapidly, industrial parks and development zones emerge as the times require, and the quantity of companies increases in a large amount, so that new requirement of water appears. As a result, in order to improve the level of urban infrastructure, and to improve investment environment, it is need to vigorously develop urban water supply and drainage construction, and to rationally utilize water resources. The construction of this project has very important significance in establishing mid-China city group. EJ Besides, It is the requirement to carry out related policies and regulations of the country, and also a good chance for the construction of small cities to connect with the world. 2.4 Scale of the Project Averagely, scale of a single Water Supply Sub-project is 10-35kt/d. The extent of Water Distribution Network is 36.456-i 11.74km. The scale of Wastewater treatment projects is 20-30kt/d. The extent of Wastewater Collection Network is 1 7.995-79.708km. Scale of the project is illustrated in detail with Table 2-2. 2.5 Contents of the Project The construction of Water Supply Sub-project mainly consists of Water Diversion Project, Water Transfer Project, Water Treatment Project, Water Distribution Project and accessory buildings. There are two kinds of water sources: surface water and ground water. Therein, 7 sub-projects' water sources are surface water and 25 sub-projects' are ground water. In addition, there are 5 Pipe Network Projects: Kaifeng Water Supply Project Project, Xinxiang Water Supply Project Project, Yima Water Supply Pipe Network Project, Luoshan Water Supply Project and Wastewater Project (city pipe network), Water Supply Project in Yangshan District, Xinyang. Among above sub-projects, Tongxu, Suixian, Suiping, Xinye, Luosyhan, Runan also include wastewater collection networks. There are altogether 5 Wastewater Treatment Sub-projects, whose contents mainly include construction of wastewater treatment plants and wastewater collection pipe network. The constitution of each sub-project is illustrated in detail with Table 2-3 and Table 2-4. IWHR 19 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Table 2-2Engineering Scope Schedule No. | Sub-project Content I. Kaifeng city Water supply plant/m 3/day 35,000.00 Water allocation pipe network / km 73. 38 1-1 Weishi Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 35,000.00 Water allocation pipe network / km 83. 67 1-2 Tongxu Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km 79. 708 Water supply plant/m3/day 30,000.00 Water allocation pipe network / km 111. 71 1-3 Lankao Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day Water allocation pipe network / km 51. 155 Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plant/m3/day 25,000.00 Water allocation pipe network / km 70. - 1-5 Qixian Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km II. Luoyang city Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 69. 1 5 2-1 Mengj in Water Supply Project Wastewater treatment plant / m3/day 25,000.00 Wastewater collection system /km 39. 11-i Water supply plant/m3/day 25,000.00 Water allocation pipe network / km (it. 689 Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plant/m3/day 30,000.00 2-3 Songxian Water Supply Project Water allocation pipe network / km 72 Wastewater treatment plant / m3/day 30,000.00 Wastewater collection system /km 23. 6(15 III. Pingdingshan city Water supply plant/m3/day 15,000.00 Water allocation pipe network / km 6(. 9'36 3-l Baofeng Water Supply Project Wastewater treatment plant / m3/day 20,000.00 Wastewater collection system /km 20. 846 3-2 Jiaxian Water Supply Project Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 11. 23 IWHR 20 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject No. Sub-project Content Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 30,000.00 Water allocation pipe network / km 72. 049 3-3 Lushan Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km IV. Xinxiang city Water supply plant/m 3/day Water allocation pipe network / km 80. 911 4-1 Xinxiang Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 30,000.00 Water allocation pipe network / km 59. 662 4-2 Yuanyang Water Supply Project Wastewater treatment plant / m3/day 20,000.00 Wastewater collection system /km 13. 013 Water supply plant/m3/day 25,000.00 Water allocation pipe network / km 7 1. 2'73 4-3 Fengqiu Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km V. Xuchang city Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 55. 71 5-1 Xiangcheng Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km VI. Sanmenxia city Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 416. 19 6-1 Shaanxian Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day Water allocation pipe network / km 70. 701 6-2 Yima Water Supply Wastewater treatment plant / m3/day Wastewater collection system /km VII Shangqiu city Water supply plant/m3/day 20,000.00 Suixian Water Supply Project, 2nd Water Supply Water allocation pipe network / km 36. 456 Plant Wastewater treatment plant / m3/day Wastewater collection system /km 17. 995 Water supply plant/m3/day 30,000.00 Water allocation pipe network / km 68. 34 7-2 Xiayi Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km 7-3 Zhecheng Water Supply Project Water supply plant/m3/day 20,000.00 IWHR 21 l~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject No. Sub-project Content Water allocation pipe network / km 75. 358 Wastewater treatment plant / m3/day Wastewater collection system /km VIII. Nanyang city Water supply plantlm3/day 30,000.00 Water allocation pipe network / km 110. 919 8-1l Dengzhou (South Suburb Water Supply Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 20,000.00 8-2 Xinye Water Supply Project, 2nd Water Supply Water allocation pipe network/km 77. 192 Plant Wastewater treatment plant / m3/day Wastewater collection system /km 32. 8555 Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 61 . 411 8-3 Sheqi Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 25,000.00 Water allocation pipe network / km 53. 92 8-4 Xichuan Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km IX. Zhumadian city Water supply plant/m3/day 15,000.00 Water allocation pipe network / km 68. 729 9-1l Queshan Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 5.2. 705 9-2 Xincai Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 20,000.00 Water allocation pipe network / km 16. 87 9-3 Xiping Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 15,000.00 Water allocation pipe network / km 59. 378 9-4 Zhengyang Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plantlm3/day 30,000.00 Water allocation pipe network / km 7 1. 605. 9-5 Suiping Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km 25.. 87 9-6 Runan Water Supply and Wastewater Collection Water supply plantlm3/day 30,000.00 Project Water allocation pipe network / km 5)5. 59 IWHR 22 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject No. Sub-project Content Wastewater treatment plant / m3/day Wastewater collection system /km 36. 763 X. Zhoukou city Water supply plantlm3/day 20,000.00 Water allocation pipe network / km 7 1. 2 75. 10-1 Shenqiu Water Supply Project Wastewater treatment plant / m3/day Wastewater collection system /km Water supply plant/m3/day 30,000.00 Water allocation pipe network / km 87. 14 10-2 Xiangcheng Water Supply Project Wseartetmnplt/m3/y Wastewater treatment plant / m 3/day Wastewater collection system /km 20,000.00 XI. Xinyang city Water supply plantlm3/day 10,000.00 Water allocation pipe network / km (10. 13 Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plantlm3/day 20,000.00 Water allocation pipe network / km 38. 225 Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plant/m3/day Water allocation pipe network / km 110. 51 11-3 Luoshan Water Supply Project and Wastewater 3 Wastewater treatment plant / m /day Wastewater collection system /km 78. 305 Water supply plantlm3/day Water allocation pipe network / km 52. 748 11-4 Yangshan Disctrict Water Supply Wseartetmnplt/m3/y Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plant/m3/day Water allocation pipe network / km Wastewater treatment plant / m3/day 30,000.00 Wastewater collection system /km 19. 88 XII. Jiaozuo city Water supply plantlm3/day 30,000.00 12-1 Mengzhou Water Supply Water allocation pipe network / km 59. 85 Wastewater treatment plant / m 3/day Wastewater collection system /km Water supply plant/m3/day 765.000.00 Water allocation pipe network / km 2484.581 Wastewater treatment plant / m3/day 125.000.00 Wastewater collection system /km l4l7. 934l Notes: Water aillcationt pipc network includes transfer pipelinc, distribuition titin and br:anch pipe to uisers. WasteNvater collection IWHR 23 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject systcm inliiides niain 1qipc and hNanch p)ipe to useis. 2.6 Location of the Project Location of the project can be seen in Table2-5.Sub-projects of water supply (surface water and groundwater) and wastewater treatment are taken for examples and detailed location map are shown in the attached Figure 2 and 3. I WHR 24 Eit vWi usfLitrt I,, 1I, Aa `-,,Re,t ) t mid Envirnm,,ent Martag-cincnt Plan of Htnan vatcr supply preject Table 2-3Locations and Constitution of Water Supply Sub-project Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source 1 Kaifeng Shallow-layer, The site is in the north of the county, It's located in the north of the county, at the Disinfection Connection pipe of well City middle and about 200m north of Beikanggou crossing between Beihuan Road and through clusters 21. 5km, water deep layer river, lOOOm west of Weikai Highway Binghe Road. chlorination transfer pipe network ground water (Weishi to Kaifeng City), covering an Constructing 2 clear water reservoirs, 1 2km, water distribution 1-1 Weishi WSP area of 4Mu. absorbing well, I conveying pumping network 35. 38km, water Building 21 wells. The pumping station, and 1 chlorination room. distribution network station covers an area of 425.25m . Manufacturing buildings cover an area of rebuilt (ikm. 338.84m2, and the accessory buildings 2 1310m . Deep-layer It's in the district of 3 km2 between the west It's located in the north of the county, at the Disinfection Connection pipe of well groundwater of Wohe river and east of Tongkai highway crossing between Beihuan Road and through clusters 20. 5km, water (Tongxu to Kaifeng City), in the north of the Jiefang Road. chlorination transfer pipe network 1-2 Tongxu WSP county, covering an area of 3Mu. Building 2 clear water reservoirs, 1 3. 12km, water Building 21 wells. The pumping station absorbing well, 1 conveying pumping distribution network covers an area of 425.25m2. station, 1 chlorination room; 45. 25km, wastewater Manufacturing buildinfs 338.8m2, collecting nettwork accessory buildings 13 10m . 79. 708km. Shallow-layer The water source is chosen at the The site is chosen in west Huanghe Road, Disinfection Connection pipe of well and deep-layer interjunction between the Lankao main to the west of the former Second through clusters 4.05km, water groundwater canal and the Lanshang main canal of Waterworks. Constructing 2 clear water chlorination transfer pipe network Lankao WSP Chengguan township in the northwest of the reservoirs, 2 sedimentation tanks, 1 1.17km, water 1-3 county, covering an area of 4.00Mu. absorbing well, I conveying pumping distribution network Building 6 60-meter-deep shallow wells, 10 station, and I chlorination room. 78. 066km, water 400-600-meter-deep deep wells; 10 Manufacturing buildings 515m2, and distribution network 2 pumping stations and auxiliary projects. accessory buildings 2 l 50m . rebuilt 5km. 1-4 Kaifeng -- -- -- water distribution WSP network:3 3. 455km.. 1 Kaifeng Middle-layer The water source is in the north of the The site is located in the west of the county Disinfection Connection pipe of well city and deep-layer county, north of North Ring Road, covering planning area, crossing of North Ring Road through clusters 78. 066km, water Qixian (Qi) groundwate 1-5 County WSP an area of 3km2. and Yinhe Road. chlorination transfer pipe network Building 32 wells (16 middle-layer wells & Constructing 2 clear water reservoirs, I absorbing 0. 700km, water distribution 16 deep wells) and 16 pumping stations. well, I conveying pumping station, and I network 38.77km, water I WHR 25 E,L,O,, ,n,. t Ine pattAsesinent Report and Environmnrt Management Plan of Henan water sipply p-eje-t Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source chlorination room; accessory buildings 1190m2 distribution network rebuilt 6. 30km. Shallow-layer The water source is in the north of the The site is in the east of Huanghe Road, Disinfection Water transfer network groundwater county, south of Huanghe River and lOkm northeast of the county's planning area. through 15. 50kmn, distribution west of XiXiaYuan, covering an area of Constructing I clear water reservoir, and 1 chlorination pipe network 31. 70km, 2 Luoyang Mengjin 5.00Mu. chlorination room; distribution network cityag 2-1 WSP Building 8 50-60-meter-deep wells; 8 water Manufacturing buildings 992.84m2; rebuilt 1. 95km. diversion pumping stations, I elevator accessory buildings 2681 m pumping station, 2 clear water reservoirs, I transformer station, I workshop and auxiliary projects. Surface The water source is in the warm dam, The site is located in the west of the county's Sedimentati Water transfer pipe water 800 meters south of Dingwan Village, planning area, south of Lihe Av., 800 meters east on, network 8km, water Liuquan Town, covering an area of of Xiangquan Village. disinfection distribution network 0.3Mu. Constructing 2 sedimentation tanks and 2 clear through 24.9km, distribution low-dam style water diversion. water reservoirs, 1 elevator pumping station, I chlorination network rebuilt 2-2 Yiyang WSP Building 1 water diversion pumping absorbing well, 1 conveying pumping station, I , ferro 5. 929km. station, which covers an area of 40m2. chlorination room, I chemical dosing room and 1 manganese transformer and switchboard room. removal Manufacturing buildings 637m2; accessory buildings 1170m2. The water source is chosen at the The site is located in the lowland areas, north of Disinfection Water transfer pipe downstream riverside of the Yihe Bridge and Jinghsan Road and west of Baiyun through network 1. 0(5km, water Songxian ShaEow-layer the left bank of Bangluhun reservoir, Road.Constructing 2 clear water reservoirs, I chlorination distribution network 2-3 (Song) Shlow-lwayer( covering an area of 28 acres. Building 8 chlorination and chemical dosing room, 1 23. 895km, distribution County grSP verai(r 30-meter-deep shallow wells. 8 water switchboard room, I absorbing well, and 1 network rebuilt 2. 06km. diversion pumping stations and auxiliary conveying pumping station; Manufacturing projects buildings 41 5.93m2, accessory buildings I 542.32m2. 3 The site is located in the Longxingsi The site is located in the peak of Fenghuang Sedimentati Water transfer pipe Pingdingsh Surf reservoir in the northwest of the Ridge, north of Huangwa Village, in the northwest on, network 23.75km, water an city 3-1 Baofeng water County, covering an area of 2Mu. of the county. Constructing 2 clear water disinfection distribution network WSP (reservoia ) The pipe crosses 2 rivers and 1 reservoirs, I reaction sedimentation tank, I siphon through 32.186km. railway. filter tank, I transformer and switchboard room, I chlorination Building 1 relief well and auxiliary chlorination room. Manufacturing buildings IWHR 26 Extvirolrreni Irrmpucl A em,terai Repuep urfd Enivi,ofr,ric,t, Munugr,,w,d INaa of Iei mn wae r supply p;jcct Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source projects. 31OM2, accessory buildings 1077m2. It's located in the Wangji Village of It's located in the east of Donghuan Road Disinfection Connection pipe 4. 2km, Jiaxian County, covering an area of of Meishan Av. in the northeast of the through transfer pipe 0. 8km, and 1.5Mu. county. Constructing I clear water chlorination the distributing pipe 3-2 Jiaxian (Jia) Shallow-layer Building 9 wells; 9 pumping stations reservoir, I absorbing well, 1 chlorination 20. 13km. County WSP groundwater and auxiliary projects. room, 1 water distributing pumping station and 1 transformer and switchboard room; Manufacturing buildings 535m2, accessory buildings m 2. The water source is Zhaopingtai The site is located at the massif of Beipo of Disinfection Transfer pipe 11. ' kin, reservoir. The water- intake is located Zhaopingtai reservoir, 11 km from the urban through and the distributing pipe Surface at Beipo in the north of the reservoir, areas. There are a pipeline blender, a chlorination 40. 01 6km. Suf ace 1km from the waterworks. vestibule reaction tank, a plate (reservoir) sedimentation tank, a V-shaped filter tank and a clear water reservoir, etc. Manufacturing buildings 155m2, accessory buildings 581. 32m2. 4 Xinxiang X.. -- -- Water distribution station. 251.1r8m. -- Water transfer pipe network city 4-1 WSP 16. 37km, water distribution network 44. 57 1 km. Middle-layer The water source is located in the It is located in north of the urban area, west Disinfection Water transfer pipe and deep-layer northwest of the county, west of of the Agriculture Bank and north of through network 12. 354km, groundwater Yuanxin Road and north of Wenyan Beihuan Road. Constructing 2 clear water chlorination water distribution 4-2 Yuanyang Ditch, nearly close to the water reservoirs, 1 absorbing well, 1 conveying network"24. 389km. WSP purification plant. 14 150-meter-deep pumping station, I chlorination room; wells, 11 water-diversion pumping Manufacturing buildings 5G,lm2, accessory station and auxiliary projects. buildings I :39(m2. Shallow-layer The site is in the area of Jiangzhuang, It is located in the southwest part of the Disinfection Connection pipe of well and deep-layer southwest of the county, covering an crossing of Shiji Av. and Fenghua Road. through clusters 3. 85km, water Fengqiu groundwater area of 2Mu. Constructing 2 clear water reservoirs, 1 chlorination transfer pipe network 4-3 Water Supply 10 shallow wells and .5 deep wells; 5 absorbing well, 1 conveying pumping 6km, water distribution Project pumping stations and auxiliary station, and I chlorination room; 2 network 35. 373km, projects. Manufacturing buildings 400. 12m , water distribution accessory buildings 1323. 76m . network rebuilt 9. 90km. IWHR 27 Eug vitunmerur/l/ t lnynul A z Rte.p,,t alid Envi,r,i,nenit MMayhgcment Plan of Henan water supply preject Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source 5 Xuchang Shallow-layer The water source is located along the It is located in the south of the county, Disinfection Connection pipe of well City groundwater Beiruhe River in the south of 800miles east of Zhengnan Road, south of through clusters 6. 78km, water Xiangcheng, covering an area of 2Mu. Beiru river and 300 meters northwest of chlorination transfer pipe network Xiangcheng 12 wells; 12 pumping stations and Qiaoshiyuan village. 1. 95km, total length of 5-1 WSP auxiliary projects. Constructing 2 clear water reservoirs, 1 the water distribution absorbing well, I conveying pumping network is h3. 90km. station, I chlorination room. Manufacturing buildings 562m2, accessory buildings 1340m2. 6 Shallow-layer The water source is the I-Level and It is located in north of Yuwang Road, Disinfection Connection pipe of well Shanmenxi groundwater 1I-Level bench terrace located in the lOOm north of Lianhuo Highway. through clusters 6km, water a city Shaanxian north of Guanzhuang, covering an Constructing I clear water reservoir, 1 chlorination transfer pipe network 6-1 (Shaan) area of 4Mu. chlorination room, 1 siphon filter tank, 1 1km, water distribution County WSP 13 wells; 1:3 pumping stations and transformer and switchboard room. network 30. 49km. auxiliary projects. Manufacturing buildings 1208. 97m2, 2 accessory buildings 1, . 72m . 6-2 Yima WSP Water distribution network 40. 70 1km. 7 Shallow-layer It is located in the northeast of Beida It is located in the southwest corner of the Disinfection Connection pipe of well Shangqiu and deep-layer Lake in the north of the county, in the crossing of West Huanhu Road (the central through clusters 9. 366km, water city ground water districts of Weidikou, Tangmiao, avenue) and Beihuan Road. chlorination transfer pipe network Chenlou, Liuxiaozhuang, Constructing 1 clear water reservoir, 1 3. 959km, water 7-1 Suixian (Sui) Huangchengzhai, and Youzhai. It absorbing well, 1 conveying pumping distribution network County WSP covers an area of 1 .69Mu. station, 1 chlorination room; 31. 647km, water 13 wells; 13 pumping stations and Manufacturing buildings 562m2, accessory distribution network auxiliary projects. buildings 3:330m2. rebuilt 0. 85km, wastewater collecting network 17. 995km. Deep-layer The water source site is in the It's located in the northwest of the county's Disinfection Connection pipe of well groundwater northeast of the county. planning area, south of the national grain through clusters 7km, water 17 wells; 8 pumping stations and reserve depot. chlorination distribution network 7-2 Xiayi WSP other auxiliary projects. Constructing 2 clear water reservoirs, 1 24. 38km, water conveying pumping station, 1 transformer distribution network and switchboard room, and 1 chlorination rebuilt 0. 56km. room; Manufacturing buildings 540m2, IWHR 28 Envjn,nrti.zcf I pult yuA3,--- Repo, t avd Enriiunmnet Manugcnwnt Plan of Hnan watcr supply preject Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source accessory buildings 1 919m2. Deep-layer The water source is chosen at the It is located near Xuyuan Garden in the Disinfection Connection pipe of well groundwater district of Xuyuan Garden in the west west of the county. through clusters 8. 21 km, water of the county, covering an area of Constructing 2 clear water reservoirs, I chlorination transfer network 7-3 Zhecheng 3Mu. absorbing well, I conveying pumping 1. 83km, water WSP 12 wells; 12 pumping stations and station, I chlorination room, and 1 distribution network auxiliary projects. transformer and switchboard room; :32. 928km, water Manufacturing buildings 580m2, accessory distribution network buildings I m2. rebuilt 0. 56km. 8 Nanyang It's located in the Zhanggou reservoir It's in the east of southern city, west of Sedimentati Water transfer pipe city of Yindan Irragation Area, covering Beijing Av. and south of Nanhuan Road. on, network 11km, water an area of lMu. The vertical distance between the site and disinfection distribution network Surface Constructing 1 water- intake under the the waterworks is 4.0km. through 79. 947km, water 8-1 Dengzhou water dam and auxiliary projects. Constructing I clear water reservoir, I chlorination distribution network WSP (reservoir) conveying pumping station, 2 reaction rebuilt 2. 325km. sedimentation tanks, 1 bivalve filter tank, 1 chlorination room, I chemical dosing room. Manufacturing buildings 486m, accessory buildings 1:321 M2. The water source is chosen at the west It is located in the east of the county, Disinfection Connection pipe of well of Longbei Village in the outside of closely near the Fanzhi Road (planning) in through clusters 3. 5kin, water county's planning area, covering an the north, 800m east of Tieta Road and chlorination transfer network area of 4Mu. with farmland in the south. 0. 68km, water 8-2 Xinye WSP Middle-layer Building 8 wells and 8 pumping Constructing 2 clear water reservoirs, 1 distribution network ground water stations and auxiliary projects. absorbing well, 1 sedimentation tank, 1 28. 95)km, water chlorination room, 1 conveying pumping distribution network station; Manufacturing buildings rebuilt 10. 062km, . I 80m2, accessory buildings I 641m2. wastewater collecting network 32. 855kmi. The water source is chosen in the It's located in east Chengying in the Disinfection Connection pipe of well north part of Chengying, covering an northwest of Sheqi, at the southeast corner through clusters 1 4. 80km, water 8-3 Sheqi WSP Sallow-layer area of 3Mu. of the crossing of Hongqi Road and Xihuan chlorination transfer network gruand deep-layer Building 8 150-250-meter-deep deep Road. Constructing 2 clear water :3. 28km, water groundwater wells, 15 60-80-meter-deep shallow reservoirs, I absorbing well, 1 conveying distribution network wells; 23 pumping stations and pumping station, 1 chlorination room. :31. 16km, water IWHR 29 E,, F ,u,..e,zt Inmpact As3esnet Report ansd En vronmcent Manag2ment Plan of Henan w aater sulpply preject Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source auxiliary projects. Manufacturing buildings 338. 80m2, distribution network accessory buildings 11 I Om2. rebuilt 6km. It's 300m away from the upstream of It's located in the north of the county, north Sedimentati Connection pipe of well Laoguan river of Shiju village, of Jingxi highway, and west the former on, clusters 14. 80kam, water northwest of the urban area. second waterworks of Group I of Shiju disinfection transfer network surface 2 water pumping stations village of Shangji Town. through 0. 60km, water Xichuan water (reconstructed) and auxiliary projects. Constructing 2 clear water reservoirs, 1 chlorination distribution network WSP (river conveying pumping station, 1 wing plate 25. 67km, water course) reaction tank, I chlorination room. distribution network Manufacturing buildings 285m2, rebuilt 7. 65km. constructed buildings 285m , and accessory buildings -5J1 Om2. 9 It is located in the Boshanhu reservoir, It's located at the bottom of Guanshan Sedimentati Water transfer pipe Zhumadian 22km southeast of Queshan, covering Mountain, east of the provincial cement on, network 2. 2km, water city an area of 2Mu. works. disinfection distribution network Surface Reconstructing the water diversion Constructing 1 clear water reservoir, 1 through 35. 129km, water 9 1 Queshan water pumping station and auxiliary wing plate reaction tank, I reaction chlorination distribution network WSP (reservoir) projects. sedimentation tank, 1 siphon filter tank, I rebuilt II. 4km. chlorination and chemical dosing room. Manufacturing buildings 27m, accessory buildings 230m2. The water source is chosen in the It is located in South New Yuling, south of Disinfection Connection pipe of well district between Daliangzhuang and Daliangzhuang. through clusters 10. 23km, water Middle-layer Shilipu of Xiaohonghe river, east of Constructing 1 clear water reservoir, I chlorination transfer pipe network 9-2 Xincai WSP and deep-layer the county, covering an area of 3Mu. absorbing well, I conveying pumping 0. 22km, water groundwater Constructing 13 195-200-meter-deep station, I chlorination room. distribution network 2 wells; 13 pumping stations and Manufacturing buildings 266.87m2, 17. '185km. auxiliary projects. accessory buildings 1616. 65m2. 9 The water source is located in the It's located in the west of the county, east Disinfection Connection pipe of well Zhumadian north of the western part of Xiping of Yinhong Trench and west of 107 through clusters 7. 59km, water city 9-3 Xiping WSP Deep-layer Av. of Xiping, south of National Highway. chlorination transfer pipe network groundwater Xiaotianzhuang, covering an area of Constructing 2 clear water reservoirs, 1 2. I Ikm, water 1.6Mu. absorbing well, 1 conveying pumping distribution network 13 wells; 13 water diversion pumping station, 1 chlorination room; 24. 76km. IWHR 30 Erivitu,nurwrl hifpucl A.ize,,ie,nl R_u/l l "d E,u ,. ... Mau,,agement IVant of lIcuian wdCr supply preject Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source stations and auxiliary projects. Manufacturing buildings 17 Iim2, accessory buildings 1()-16m2. The water source is chosen in the It's located at the northwestern corner of Disinfection Connection pipe of well district of Yanzhuang, Zhoulou the crossing between Xierhuan Road and through clusters 6. 229km, water Village of Shenshui Township, Beierhuan Road. chlorination transfer pipe network Zhengyang Deep-layer covering an area of 2Mu. Constructing I clear water reservoirs, 1 0. 999km, water 9-4 Zh~WSP gndwa tDer 11 wells; 1I pumping stations, and absorbing well, I conveying pumping distribution network auxiliary projects. station, 1 chlorination room. 28. lom Manufacturing buildings 401. 7m2, accessory buildings 1554. 23m2. The water source is chosen in the It's located near the Wulou, 2km west of Disinfection Connection pipe of well district of Lianhuanhu Farm, west of the county's planning area. through clusters 1 2. 80km, water Middle and the county, covering an area of lMu. Constructing 2 clear water reservoirs, I chlorination transfer pipe network 9-5 Shuiping deep-layer Building 18 100-meter-deep wells and absorbing well, 1 conveying pumping 3. 67km, water County WSP deeplayter 18 pumping stations and auxiliary station, 1 chlorination room. distribution network projects. Manufacturing buildings 394m2, accessory 37. 935km, wastewater buildings 1410m2. collecting network 25. 87km. The water source is located in the It's closely near the Kai-Gong Highway, Disinfection Connection pipe of well Dayangzhuang, Liulou and between the south part of Tianzhong Wine through clusters 18.52km, water Gaozhuang districts in the northwest Plant and Cuzhuang Village. chlorination transfer pipe network Middle and of the county, covering an area of Constructing 2 clear water reservoirs, 1 1.16km, water 9-6 Runan WSP deep-layer 2Mu. absorbing well, 1 conveying pumping distribution network groundwater Building 22 250-meter-deep wells; 22 station, 1 chlorination room; 27. 430km, wastewater pumping stations and auxiliary Manufacturing buildings 294.3im, collecting network projects. accessory buildings 1996m . 26. 763km. 10 The water source is located in the It's located in the southern bank of the Disinfection Connection pipe of well Zhoukou district of Gaoying-Gaozhai, Yinghe River, and in the blocks south of through clusters 4. 7km, water Middle andrd city 10-1 Shenqiu deler southeast of Shenqiu, covering an the county's 2nd High School, east of chlorination transfer pipe network WSP deep-layer area of 4Mu. Zhaofeng Av. S. 63km, water groundwater Building 17 wells, 17pumping station Constructing 2 clear water reservoirs, I distribution network and auxiliary projects. absorbing well, I conveying pumping 29. 6:45km, water IWHR 31 E,. v, um,a,, ,t I .. A ep- , Le,t eRpoit and Environtl,vnt Aarnagcnwnt Plan of Henan water suplyprefjct Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source station, I chlorination room; distribution network Manufacturing buildings 350m2, accessory rebuilt 4km. buildingsl 150m2. It's located in the district of It's located at the crossing between Hubing Disinfection Connection pipe of well Kongzhuang Village, Zhoulou, Road and Nanhuan Road. through clusters 16.'1km, water southwest of the urban area, covering Constructing 2 clear water reservoirs, 1 chlorination transfer pipe network 10-2 Xiangcheng deep-layer an area of 3Mu. absorbing well, I conveying pumping 7. 61km, water WSP deep-later 22 wells; 22 pumping stations and station, I chlorination room. distribution network auxiliary projects. Manufacturing buildings 3t7. 17m , 33. 17km, water accessory buildings 1661. 05m2. distribution network rebuilt l1. .Km. 11 It's located in the Gongzhuang Village It's in the west of existing tank station, Sedimentati Water transfer pipe Xinyang of Pingqiao district, covering an area southwest of 107 National Highway and on, network 14.50km, water city of 4Mu. the planned Gangchang Road. disinfection distribution network Minggang Surface Constructing 1 water- intake and Constructing 2 clear water reservoirs, 1 through 16.54km, branch water 11-1 Town water auxiliary projects. absorbing well, I conveying pumping chlorination distribution network Disctrict wavr station, 1 chlorination room, I chemical 14km. WSP eservoir dosing room, 2 gridding reaction tanks and 2 sedimentation tank 2. Manufacturing buildings 2 662. 22m , accessory buildings 1308. 08m . The water source is chosen at the It's located in the northeastern corner of the Disinfection Connection pipe of well peripheral farmland of the planning county, at the flank of crossing between through clusters 5km, water Xixian (Xi) Middle and area in the northeast of the county, Beihuan Road and Donghuan Road. chlorination transfer pipe network 11-2 County WSp deep-layer covering an area of 3Mu. Constructing 2 clear water reservoirs, 1 2.64km, water groundwater 12 wells; 13 pumping stations and absorbing well, 1 conveying pumping distribution network auxiliary projects. station, I chlorination room; outl3uildings 35. 585km. 3()0m2, accessory buildings 1381m . -- -- -- Water transfer pipe 11-3 Luoshan network 63. 324km, WSP wastewater collecting network 54. 30.5km. Constructing I pipe station, 3 clear water Sedimentati Wwater transfer pipe Yangshan reservoirs, 1 absorbing well, I chlorinatiop on, network 1. :30km, water 12-4 Disctrict -- room; Manufacturing buildings 212m, disinfection distribution network WSP accessory buildings 2060m . through 51. 448km,. chlorination 12 Jiaozuo 12-1 Mengzhou Surface The water source is near Yellow It is in the south of vocational technical Sedimentati Connection pipe of well city WSP water River. secondary school on South Dading Road, on, clusters 11. 35km, water IWHR 32 E,. vm,,,..I. a l,,puoL A.,e3.. e Repk l .,. d Envimnminit Manwgcmnnt Plan of Hcnqn ivatcr supply preject Constitution of the project Location No. Name of the Water Diversion Project Water Treatment Project Pipe Network Project sub-project Water Location and arrangement Location and arrangement Technology Length source (conservati 17 wells: 17 pumping stationis. 1.7km from the conservation pond. disinfection transfer pipe network on pond) Constructing 2 clear water reservoirs, I through 5. 21km, water absorbing well, 1 conveying pumping chlorination distribution network station, 1 chlorination room, 1 reaction 44. 61 km. tank, I sedimentation tank. Manufacturing byildings - ,ii2, accessory buildings h513m . Notes: Branch pipe to users and to water meter don't been incluede in Pipe network projects here. IWHR 33 E,.v., uwc,, II..l ,,,>tAsjesene,w, Report aid Enivi,,nMent Mannagemcat Plan of Hcnan ivater supply preject Table 2-4Constitution of Wastewater Treatment Sub-project Length of Name ofwatwtrWeabu Location No.sub-prof Location and arrangement of the project Technology wastewater Whereabout Sub-project pipe of drainage network Is located in the southwest of the county, reaching West Huancheng Road in the east, Neighboring Dongzigou in the west, about 150m away from the ash storage silo of Items of Mengjin Power Plant in the south, reaching the productivity road of 13 Group of Sihenan Orbal Luoyang 1-I ems Constructing coarse screens, 1 inlet pumping station, fine screens, I sedimentation tank oxidathon 21. kni River wtreatment and 2 measuring tanks, 1 anaerobic tank and 2 Orbal oxidation ditches, 2 reaction tanks, 2 tc secondary sedimentation tanks, I chlorination room, 1 contact tank, 1 return and excess technology sludge pumping station, I sludge thickening and dewatering station. Manufacturing buildings 801m2, auxiliary occupancy 1.520. 72m2. Items of It's located in the west of the southern part of Donguan Bridge. Songxian Constructing coarse screens, 1 inlet pumping station, fine screens, 1 sedimentation tank, I / Luhun 1-II (song) measuring tank, I reaction tank, 1 secondary sedimentation tank, 1 distributing well, I A/Oo 23. 6-15km usun Wastewater excess and return sludge pumping station, 1 sludge thickening and dewatering station. technology Resercior 22 Treatment Manufacturing buildings 732m2, auxiliary occupancy 1792m . Items of It's in the outskirts of the planning area of East County, east of West Trunk Road and north Orbal 4 Xinxiang Yuanyang of Wenyan Trench. oiainWna 4 in g 4-1 WYuanyantg Constructing coarse screens, 1 inlet pumping station, fine screens, 1 sedimentation tank, 1 dth 42. 97km Wenyan distributing well, 1 secondary sedimentation tank, 1 biological treatment room, and sludge d 4 k pumping station.Manufacturing buildings 61 . m2 , auxiliary occupancy 1230m2. technology It's located in the east of the urban area, east of Donghuan Road of the planning area, 400 miles east of Dazhangzhuang Village and 500 meters north of Jingchang River. Orbal 3Pingdingshan 31 WBaotfentg Constructing coarse screens, inlet pumping station, fine screens, 2 votex grit chambers, 1 oxidation 20- l -m Jingchang city distributing well, 2 oxidation ditches, 2 sedimentation tank, I sludge pumping station and ditch River 1 sludge cushion tank. technology Manufacturing buildings 515 m2, auxiliary occupancy I I I Om2. It's in the northeast of the county, at the northwestern bank of Xiaohuanghe River, 250 Items of miles east of Xianfeng Village. Its vertical distance to Ningxi Railroad is 1000m. Orbal 12Xinyang 12-I Huangchuan Constructing coarse screens, inlet pumping station, fine screens, 1 votex sedimentation oxidation 19. 88km Xiaohuanghe city Wastewater tank, 2 oxidation ditches, 4 secondary sedimentation tanks, 1 contact tank, 1 plant site ditch River Treatment pumping station, I sludge pumping station. technology 2 2 Manufacturing buildings 747m , auxiliary occupancy 1473m . Notes: Branch pipe to users doesn't been included in wastewater pipe network here. IWHR 34 Environment Impact Assesment Report and Environment Management Plan of Henan wvater supply preject Table 2-5 General Situation of the Arrangement of the project Items classification Arrangement of the project Water diversion pumping station and sedimentation tank are built near the bank; conduit pipe (culvert or open canal) is built between water- intake and water purification plant. Water source is The disposal of water purification plant includes main structures and surface water auxiliary buildings. Water distribution network includes water main and branch pipes entering families.. Parts of the sub-projects make use of existing water diversion ports, and Water supply directly connect a conduit pipe from the existing deposition main. sub-project The Location of water source sets up well clusters. The well spacing is usually often 500-800m, partly 400-500m, individually 1000-1200m. 1 water diversion pumping station is built in each well. Arborescence connection pipes are used to connect the wells and the Water source is connection trunk, and then send water through conduit pipes to the water ground water purification plant. The disposal of water purification plant includes main structures and auxiliary buildings. Water distribution network includes water main and branch pipes entering families. The disposal of wastewater treatment plant includes main structures and Wastewater treatment sub-project auxiliary buildings. Wastewater Collecting Pipe network includes main pipe and branch pipe to users. 2.7 Technological Flow 2.7.1 Water supply projects Water purification technique of water supply sub-project of this project is normal. Taking underground water as the resource, the project, as for its good quality, can satisfy the requirement of Drinking Water Sanitary Standard (GB5749-85). The project generally takes the method of disinfection with chlorine. Those water supply project taking surface water as the resource, adds processes of precipitation, flocculation and etc. before the process of disinfection with chlorine. These processes will eliminate earthy materials or reduce the content of other over-standard items. For example, because there is too much iron and manganese in water source, water supply project of Yiyang installs filter tank in technological flow to remove iron and manganese. Schematic drawings of surface water treatment technology and underground water treatment technology see Figure 2-2 and Figure 2-3. 2.7.2 Wastewater treatment projects In the sub-project of wastewater treatment, there are 4 items using Orbal oxidation channel technology, and 1 takes the method of A/OO activated sludge. These two treatments all have simple flow, stable operation and convenience management. The technological flow refers to in Figure 2-4 and Figure 2-5. 2.8 Occupation, Relocation and Emplacement of the Project Referring to RAP, total permanent land occupied is 1202.8 mu, in which, 906.45 mu is occupied by water plants, 90.8 mnl is occupied by water souLces, 205.56 mu is occupied by wastewater treatment. Temporary land occupation by construction is 940.5 mu, in which, 912.5 mu by water supply and other 28 mu by wastewater treatment. IWHR 35 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Table 2-6Land occupation by water supply sub-projects Permanent land occupation (mu) Temporary land occupation (mu) County Construction and laying of pipes Water plant Water source Sum and wells Weishi 18.90 4.00 22.90 22.50 Tongxu 18.90 3.00 21.90 15.00 Lankao 30.00 4.00 34.00 15.00 Qixian 30.00 2.00 32.00 7.50 Kaifeng Mengjin 4.00 5.00 9.00 30.00 Yiyang 32.00 0.30 32.30 7.50 Songxian 22.25 22.25 7.50 Baofeng 17.59 2.00 19.59 60.00 Jiaxian 18.30 1.50 19.80 7.50 Lushan 25.00 0.00 25.00 58.00 Xinxiang 16.06 0.00 16.06 15.00 Yuanyang 31.6() 0.00 31.60 7.50 Fengqiu 36.00 18.00 54.00 7.50 Xiangchengl 32.10 1.00 33.10 3.75 Shanxian 20.00 4.00 24.00 15.00 Yima Suixian 43.5 2.6 46.1 7.50 Xiayi 30.00 3.00 33.00 7.50 Zhecheng 34.50 3.00 37.50 15.00 Dengzhou 71.00 1.00 72.00 315.00 Xinye 12.()( 2.(( 14.00 7.50 Sheqi 14.70 3.00 17.70 15.00 Xichuan 15.10 15.10 7.50 Queshan 21.98 2.00 23.98 7.50 Xincai 23.60 3.00 26.60 30.00 Xiping 20.10 1.60 21.70 7.50 Zhengyang 30.00 2.00 32.00 15.00 Suiping 25.50 1.00 26.50 7.50 Runan 30.60 2.00 32.60 15.00 Shenqiu 18.77 4.00 22.77 15.00 Xiangcheng2 44.00 8.80 52.80 15.00 Pingqiao district 23.40 4.00 27.40 0.00 Xixian 20.00 3.00 23.00 7.50 Luoshan Yangshan district 30.00 30.00 7.50 Mengzhou 45.00 0.00 45.00 72.75 Total 906.45 90.8 997.25 912.5 Notes: Xinxiang water plant occupies national land 2 mu, Lushan and Xinye water plants occupy national IWHR 36 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject and self ownend land totally 37mu. Table 2-7Land occupation by wastewater treatment County Permanent land occupation Temporary land occupation (mu) (mu) Mengjin 45 6 Songxian 41 8 Yuanyang 40 2 Baofeng 37.8 7 Huangchuan 41.76 5 Total 205.56 28 Among these 42 sub-projects, only Menjin wastewater involves 92 capita (23 families) resettlement and 2300m2 dismantlement. The resettlement is nearby. Items influenced by water supply sub-projects above ground: 1) tree: young trees 10422, mature trees 111, nursery 11 mu; 2) substructures: electricity power poles 27, bridges 2, culverts 4, farming wells 777m, temporary facilities in farmland 420. 1 m2; 3) cemetery: 93. Details refer to table 2-8. Items influenced by wastewater treatment sub-projects above ground: 1) tree: young trees 673, mature trees 5; 2) substructures: electricity power poles 8, farming wells 130m, temporary facilities in farmland 91,85m2; 3) cemetery: 1. Details refer to table 2-9. Table 2-81tems influenced by water plants, water source and pipings County electricity Young Mature Nursery Bridges culvert Cemetery Farmland power poles trees trees (mu) (m) facilities (m) Weishi Tongxu 3 100 30 2 69 Lankao Qixian 12 115 19 Kaifeng Mengjin 59 Yiyang Songxian 75 Baofeng Jiaxian Lushan Xinxiang 6 Yuanyang 2 400 1 7.5 Fengqiu 900 10 Xiangchengl 3055 414 16 Shanxian 90 10 41 Yima Suixian 2 90 Xiayi 2 90 IWHR 37 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject County electricity Young Mature Nursery Bridges culvert Cemetery Farmland power poles trees trees (mu) (m) facilities ( m2) Zhecheng Dengzhou 3642 11 2 4 233 16 67 Xinye Sheqi 30 Xichuan 2 Queshan 1 1 Xincai Xiping 3 21 Zhengyang 85 Suiping 100 100 10 Runan 200 Shenqiu Xiangcheng2 1628 19 Pingqiao 5 district Xixian Luoshan Yangshan district 8.6 Mengzhou 58 Total 27 10422 111 11 2 4 777 93 420.1 Table 2-91temns influenced by WWTP and pipings Power County pole Young tree Mature tree Well(m) Cemetery Farmland facilities (im2) Mengjin 15 30 Songxian 2 32.65 Yuanyang 3 300 5 60 59.2 Baofeng 169 Huangchuan 3 189 40 1 Total 8 673 5 130 1 91.85 IWHR 38 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Disinfection :with chlorine. Water _ w ~~~~~~ ~ ~~~~~~~~~Water L source Conduit pipe Fitter water Absorbing Conveying distribution ~ Ue C l|C onduit pipe i l well M pump |- network F 3 Figure 2-2 Underground water treatment technological flow .Disinfection t :with chlorine. Water uConduit pipe| ' * Filter water Absorbing Conveying l Distributing User area well pump pipe .Precipitation/Mix/FlocculationIFiltr! ation and etc. Figure 2-3 Surface water treatment technological flow E 0~~~~~~~~ 0 Raw sewage " Water out U~~~~~~~~~~~~~~~~~~~~. .5 ~~~~~0 -~~~~~~~~~t o~ Sludge pump I tntinn I Waste sludge Sludge thicking extractor Sludge cake carry room Figure 2-4 Orbal dioxidation channel wastewater treatment technological flow Anaerobic Anoxic Aerobic Water Feed zone zone zone Second Mixed liquor back flow Retum-sludge flow Figure 2-5 A/OO activated sludge process water treatment technological flow IWHR 39 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 2.9 Construction Planning Generally speaking, the construction period of each sub-project of this project is two to five years. According to water supply project: water source site project needs a period of two years, water purification plant project needs a period of one year, pipe network project needs a period of four years, and wastewater treatment works needs a period of two years. Construction stage contains stages of preliminary design, construction drawing design, goods purchase, civil engineering construction, pipe network construction, equipment installation, running test and debug, acceptance of works, personnel training and so on. According to the review of the World Bank for this project, the project will be divided into two groups in process. The first group is from 8 to 12, and the second group is from 30 to 34. The beginning of these two groups of projects is different, the first group will begin from the third quarter of 2005, and the second group will begin from the third quarter of 2006. The process of the project is based on city's development planning. Based on the actual situation of the reconstruction of old city, the project will take place step-by-step, section-by-section, and area-by-area. In principle, water source site project of each sub-project is divided to two phrases, the first year and the third year. Water purification plant project will be completed in the first year. Pipe network project will be completed in four years by stages. In order to save time, each stage will be taken place cross-by-cross, and link-by-link. 2.10Operation and Management of the Project After the construction of this project, in the style of operation, it will take measures to promote the industrialization of water on the basis of insisting on the principle of market. It will establish and perfect charge mechanism of water supply and wastewater treatment, and establish project entity (company), in charging of financing, construction, and management of the project. The project plans to perform manager responsibility system, and the details of the setup of management institution of project operation see Figure 2-6. Workshop production personnel take into action with triple shift, and technical and managerial personnel exercise eight-hour dayshift working system, working 365 days a year. The project will train the personnel in managerial and technical aspects. Every personnel taking part in the train should pass the examination organized by plants before working. Manpower quota of the project is totally 1,920, among which managerial personnel are 324, technical personnel are 226, and production personnel are 1 .402. The resource of labor force is depending on recruitment, invitation, competition for positions and so on. Details of the manpower quota see Table 2-10 and Table 2-11. IWHR 40 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Table 2-10 Manpower quota of water supply project Personnel Serial Managerial Technical Production Number Personnel Personnel Personnel (Man) (Man) (Man) (Man) El Kaifeng 1-1 Water supply project in Weishi 9 6 45 60 1-2 Water supply project in Tongxu 9 6 45 60 1-3 Water supply project in Lankao 8 5 37 50 1-4 Water supply project in Kaifeng 8 5 37 50 1-5 Water supply project in Qi 3 6 6 1 5 U Luoyang 2-1 Water supply expansion project in Xin'an 7 5 33 45 2-2 Water supply project in Mengjin 8 5 23 36 3 Water supply project in Yiyang 9 6 45 60 4 Water supply expansion project in Songxian Ei Pingdingshan 8 5 27 40 1 Water supply project in Baofeng 7 4 34 45 2 Water supply reconstruction and expansion project in Jia 8 5 37 50 3 Water supply project in the new city of Pingdingshan LI Xinxiang 2 4 7 13 1 Water supply project in the new city of Xinxiang 13 9 61 83 2 Water supply project in Yuanyang 8 5 37 50 3 Water supply project in Fengqiu Li Xuchang 7 5 38 50 Water supply project of the second water supply plant in Xiangcheng Ln Sanmenxia 7 5 33 45 Water supply project of the third water supply plant in Shan 3 7 10 2 Water supply project of the pipe net in Yima E Shangqiu 6 4 45 55 Water supply project of the second water supply plant in Sui 15 10 25 50 2 Water supply project in the new city of Xiase 9 6 30 45 3 Water supply engineering in Zhecheng Li Nanyang 9 6 45 60 Water supply project of Dengzhou south-suburb water plant 11 7 32 50 The second water supply construction project of Xinye Water Works 7 5 38 50 3 Water supply project in Sheqi 9 6 45 60 Water supply project (reconstruction and expansion) in Xichuan 9 6 45 60 IWHR 41 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Personnel Serial Managerial Technical Production Project Name Total Number Personnel Personnel Personnel (Man) (Man) (Man) 3] Zhumadian 1 Water supply project in Queshan 8 5 27 40 2 Water supply project in Xincai 8 5 37 50 3 Water supply project in Xiping 8 5 37 50 4 Water supply project in Zhengyang 8 5 47 60 5 Water supply expansion project in Suiping 8 5 37 50 6 Runan water supply project 8 5 37 50 O Zhoukou 1 Water supply project in Shenqiu 8 5 32 45 2 Water supply project in the new city of Xiangcheng 10 6 34 50 L Xinyang 1 Water supply project in Pingqiao district 6 6 48 60 2 Water supply project in Xi 12 8 25 45 3 Water supply project in Luoshan 6 4 38 48 Water supply project of the pipe net in the new city of Xinyang 10 7 53 70 3 Jiaozuo 1 The third water supply plant project in Mengzhou 8 5 27 40 Total 298 208 1284 1790 Table 2-11 Manpower quotas of Wastewater treatment projects Personnel Serial Managerial Technical Production Project Name Total Number Personnel Personnel Personnel (Man) (Man) (Man) (Man) 3 Luoyang 1-1 Wastewater project in Mengjin 5 4 27 36 Wastewater plant project in Songxian 5 4 27 36 3 Pingdingshan Wastewater plant project in Baofeng 5 3 22 30 3 Xinxiang Wastewater treatment works in Yuanyang 6 4 20 30 G Xinyang Wastewater works in Huangchuan 5 3 22 30 Total 26 18 118 162 IWHR 42 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Govemment of municipality directly under the provincial authorities, and govemment nf cnhintv Organizer of the project Engineering group Financial affairs group Comprehensi Materials-supply ye group group _ _1 4 4 4 1 I1LII_1 Figure an o Mt 0. C C N~~~~~~~~~~~~~~ .0 0 0.0. * l~~~~~~~~~~~~l 0~~~~~~~~~ u~~~~~ N ~~~~~~~~~~~~~~~~~~~~~~~~~~~~E 0~~~~~~0 U 4:~~~~~~ Figure 2-6 The setup of management institution of project operation 2.11 Project Investment Total investment contains construction investment and circulating funds. Total investment is 315.71 3.800) USD, equal to 2.557,282,000) RMB, among which construction investment is 315.555,300 USD, equal to 2,547.898.300 RMB; circulating funds is 1,158,500 RMB, equal to 9,383,700 RMB. Among the construction investment, loan application from the World Bank is about 150.000.000 USD, equal to 1,215,000,000 RMB. Details of investment of each sub-project see Table 2-12. IWHR 43 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Table 2-12 Investement of sub-projects Construction investment WB loan Municipality No. County 10k USD 10k RMB 10k USD 1 Ok RMB Water supply IKaifeng 1-1 Weishi 901.55 7302.58 431.17 3492.45 1-2 Tongxu 1437.2 11641.33 674.4 5462.6 1-3 Lankao 889.05 7201.33 421.12 3411.04 1-4 Kaifeng 736.99 5969.64 389.38 3153.96 1-5 Qixian 337.73 2735.59 1''s. i; 1363.85 2Luoyang 2-1 Mengjin 730.05 5913.38 322.83 2614.89 2-2 Yiyang 760.71 6161.76 351.16 2844.41 2-3 Songxian 517.63 4192.81 177.98 1441.61 3Pingdingshan 3-1 Baofeng 598.02 -1 .3.98 329.17 2666.28 3-2 Jiaxian 422.08 3418.85 224.36 1817.32 3-3 Lushan 797.27 6457.87 381.23 3088 4Xinxiang 4-1 Xinxiang 597.88 4842.86 327.98 2656.66 4-2 Yuanyang 767.01 6212.76 347.46 2814.46 4-3 Fengqiu 684.28 5542.63 207.73 1682.65 SXuchang 5-1 Xiangchengl 680).37 5511 384.43 3113.9 6Sanmenxia 6-1 Shanxian 602.42 4879.62 319.72 2589.71 6-2 Yima 586.88 4753.69 299.57 2426.53 7Shangqiu 7-1 Suixian 905.67 7335.9 412.7 3342.83 7-2 Xiayi 797.26 6457.77 413.07 3345.88 7-3 Zhecheng 711.71 5764.87 222.64 1803.42 8Nanyang 8-1 Dengzhou 1038.66 8413.17 536.17 4343.01 8-2 Xinye 825.26 6684.64 447.97 3628.55 8-3 Sheqi 594.99 4819.45 327.27 2650.86 8-4 Xichuan 537.15 4350.9 277.13 2244.76 9Zhumadian 9-1 Queshan 557.6 4516.54 305.81 2477.05 9-2 Xincai 599.32 4854.47 300.68 2435.54 9-3 Xiping 636.17 5152.96 347.71 2816.47 9-4 Zhengyang 532.72 4315.02 227.07 1839.28 9-5 Suiping 1111.36 9002.06 529.12 4285.85 9-6 Runan 1091.72 8842.92 471.34 3817.86 lOZhoukou 10-1 Shenqiu 733.92 5944.79 383.74 3108.25 10-2 Xiangcheng2 971.48 7869 264.67 2143.86 llXinyang 11-1 Pingqiao district 421.41 3413.41 232.28 1881.46 11-2 Xixian 455.03 3685.78 266.98 2162.53 11-3 Luoshan 1095.39 8872.65 604.45 4896.05 11-4 Yangshan district 1246.35 10095.45 600 4860 12Jiaozuo 12-1 Mengzhou 844 6836.39 441.71 3577.88 Wastewater treatment 2Luoyang Mengjin 726.87 5887.68 302.79 | 2452.62 IWHR 44 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject Songxian 674.55 5463.83 172.23 1395.03 3Pingdingshan Baofeng 601.14 4869.21 306.77 2484.82 4Xinxiang Yuanyang 730.82 5919.68 392.27 3177.41 lIXinyang Huangchuan 738.85 5984.69 182.36 1477.12 Strength of lrovince ornanizations 344.85 2793.3 273 2211.3 Total l 31571.38 255728.2 15000 121504) IWHR 45 Environment Impact Assesment Report and Environment Management Plan of Henan water supply preject 3 Natural and Social Environment 3.1 General Overview of Environment in the Project Area 3.1.1 Natural environment Geographic position: Henan province locates at the east part of Mid China, mid and down stream of Yellow River, southwest of Huanghuaihai plain, and among east longitude 110

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