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CHAPTER Ⅰ SURVEY OF WASTE-TO-ENERGY
1.1 SURVEY OF WASTE-TO-ENERGY INDUSTRY
1.1.1 Definition of Waste-to-energy
1.1.2 Main Modes of Waste-to-energy
1.1.3 Three Steps of Waste-to-energy
1.2 WASTE-TO-ENERGY SYSTEM AND PROCESS
1.2.1 Thermodynamic Treatment System
1.2.2 Biochemical Treatment System
1.2.3 Waste Processing
1.2.4 Power Generation Processes
CHAPTER Ⅱ CURRENT WASTE PROCESSING AND TECHNICAL ANALYSIS
2.1 TECHNICAL ANALYSIS OF OVERSEAS WASTE PROCESSING
2.1.1 Current Overseas Technology of Waste Processing
2.1.2 Waste Processing Analysis Technology of Developed Countries
2.1.3 International Technical Development Trend of Waste Processing
2.1.4 Experience from Some Countries in Waste Processing
2.2 ANALYSIS OF CURRENT URBAN WASTE TREATMENT IN CHINA
2.2.1 Overview of Urban Waste Treatment in China
2.2.2 Properties of Domestic Urban Waste
2.2.3 Analysis of Current Urban Waste Processing in China
2.3 CURRENT DEVELOPMENT OF WASTES TREATMENT PROJECTS IN CHINA
2.3.1 Yanliang Building up Northwest China’s First Non-Hazardous Waste Treatment Plant
2.3.2 Startup of Yunnan’s First Rural Domestic Waste Treatment Plant
2.3.3 Online Monitoring of Beijing Waste Treatment Facilities
2.3.4 Construction Plan of Waste Treatment Plant in Fujian
2.3.5 Hohhot Investing in Rebuilding Xijiao Waste Treatment Plant
2.4 STRATEGY FOR DEVELOPMENT OF WASTE TREATMENT
2.4.1 China’s Countermeasures for Industrialization of Waste Treatment
2.4.2 China Implementing Multi-layer Waste Treatment Programs
2.4.3 Urban Waste Treatment And Management Countermeasures
CHAPTER Ⅲ ANALYSIS OF WASTE TREATMENT FEE COLLECTION
3.1 ANALYSIS OF OVERSEAS DOMESTIC WASTE TREATMENT FEE COLLECTION
3.1.1 Charging System of Urban Domestic Waste Treatment in ERE
3.1.2 Basis for Domestic Waste Treatment Fee Collection in ERE
3.1.3 Economic Means of Urban Domestic Waste Fee Collection System
3.1.4 Categories and Features of Urban Domestic Waste Treatment Fees
3.2 FEE COLLECTION OF WASTE TREATMENT IN CHINA
3.2.1 Chinese Cities Generally Collecting Domestic Waste Treatment Fees
3.2.2 National Measures for Charging System for Urban Domestic Waste Treatment
3.2.3 Sewage and Waste Treatment Fees Going up in China
3.2.4 Current Waste Treatment Fee Collection In Provinces in China
CHAPTER Ⅳ ANALYSIS OF WASTE-TO-ENERGY INDUSTRY
4.1 SURVEY OF OVERSEAS WASTE-TO-ENERGY INDUSTRY
4.1.1 Analysis of Overseas Waste-to-energy Technology
4.1.2 Overview of Overseas Waste-to-energy Plants
4.1.3 Overview of World’s Incineration Power Generation
4.1.4 Overview of Waste-to-energy Industry in Some Countries
4.2 SUMMARY OF WASTE POWER INDUSTRY IN CHINA
4.2.1 Significance of Waste Power Generation in China
4.2.2 Necessity and Possibility of Waste Power Generation in China
4.2.3 Bright Prospect of Waste Power Generation in China
4.2.4 Benign Operation to be Formed in Waste Power Industry
4.3 ANALYSIS FOR WASTE POWER INDUSTRY IN CHINA
4.3.1 Analysis for Industrial Status
4.3.2 Analysis for Industrial Background
4.3.3 Analysis for Industrial Features
4.3.4 Analysis for Pattern of Industrial Completion
4.4 ANALYSIS FOR WASTE INCINERATION POWER INDUSTRY AT HOME
4.4.1 Features of Waste Incineration Power Industry in China
4.4.2 Analysis for Particularities of Waste Incineration Power Industry
4.4.3 Measures for Promoting Development of Waste Incineration Power Industry
4.5 BARRIERS IN DEVELOPMENT OF WASTE POWER INDUSTRY IN CHINA AND STRATEGIES
4.5.1 Difficulties to Be Solved in Waste Power Generation
4.5.2 Difficulties in Cost of Waste Power Generation
4.5.3 Industrialization of Waste Power Generation Are Unnecessarily Required
4.5.4 Cut-Throat Competition Shall Be Prevented in Waste Power Industry
CHAPTER Ⅴ TECHNICAL ANALYSIS IN WASTE POWER INDUSTRY
5.1 TECHNICAL ANALYSIS FOR WASTE POWER GENERATION
5.1.1 Existing Technologies for Waste Incineration Power Generation
5.1.2 Summary of Technologies for Waste Landfill Gas Power Generation
5.1.3 Regenerable Development of Waste Landfill Gas Power Generation
5.2 FEASIBILITY ANALYSIS FOR TECHNOLOGIES OF WASTE POWER GENERATION
5.2.1 Feasibility Analysis for Heat Supply in Waste Power Generation
5.2.2 Feasibility Analysis for Application of Fluidized Bed Technology in Waste Power Generation
5.2.3 Feasibility Analysis for Reform of Small-Unit Boiler in Waste Power Generation
5.3 NEW TECHNOLOGIES FOR WASTE POWER GENERATION
5.3.1 Hot Fuel Gasification Waste Power Generation
5.3.2 Alkali Metal High-Efficiency Waste Power Generation
5.3.3 Pyrolysis Gasification Incineration Power Generation
CHAPTER Ⅵ MARKET ANALYSIS OF WASTE TO ENERGY PLANTS
6.1 DEVELOPMENT OF BURNING EQUIPMENT OF WASTE INCINERATORS
6.1.1 Type and features of modern waste incinerators
6.1.2 Development of urban waste incineration equipment in China
6.1.3 Remolding scheme of boiler for incinerator
6.2 COMPARISON AND ANALYSIS OF VARIOUS TYPES OF INCINERATORS
6.2.1 Mechanical fire grate incinerator
6.2.2 Fluid-bed type incinerator
6.2.3 Circumgyrating type incinerator
6.2.4 CAO incinerator
6.2.5 Impulse tossing type fire grate incinerator
6.3 DEDUSTING EQUIPMENT FOR INCINERATOR
6.3.1 Electric dust remover
6.3.2 Bag dust remover
6.3.3 Comparison between electric and bag dust removers
6.4 STATUS OF LOCALIZED MAKING OF WASTE-TO-ENERGY EQUIPMENT IN CHINA
6.4.1 Core parts of waste incineration power generation equipment localized in China
6.4.2 Shenzhen got new approach for localized manufacturing of waste-to-energy equipment
6.4.3 The first domestically made waste-to-energy transportation equipment launched
CHAPTER Ⅶ SURVEY OF WASTE-TO-ENERGY INDSUTRY IN REGIONS OF CHINA
7.1 NORTH CHINA
7.1.1 Beijing
7.1.2 Tianjing
7.1.3 Shanxi
7.2 EAST CHINA
7.2.1 Shanghai
7.2.2 Shandong
7.2.3 Jiangsu
7.3 SOUTH CENTRAL CHINA
7.3.1 Hunan Province
7.3.2 Guangzhou
7.3.3 Shenzhen
7.4 SOUTHWEST CHINA
7.4.1 Chongqing
7.4.2 Chengdu
7.4.3 Yunnan
7.5 NORTHWEST CHINA
7.5.1 Qinghai
7.5.2 Gansu
7.5.3 Ningxia
CHAPTER Ⅷ ANALYSIS ON KEY ENTERPRISES
8.1 HUAGUANG STOCK
8.1.1 Company profile
8.1.2 Analysis on operation status of Huaguang Stock during January – December 2011
8.1.3 Analysis on operation status of Huaguang Stock in the first half of 2012
8.2 HATOU STOCK
8.2.1 Company profile
8.2.2 Analysis on operation status of Hatou Stock during January – December 2011
8.2.3 Analysis on operation status of Hatou Stock in the first half of 2012
8.3 TAIDA STOCK
8.3.1 Company profile
8.3.2 Analysis on operation status of Taida Stock during January – December 2011
8.3.3 Analysis on operation status of Taida Stock in the first half of 2012
8.4 SHENZHEN ENERGY
8.4.1 Company profile
8.4.2 Analysis on operation status of Shenzhen Energy during January – December 2011
8.4.3 Analysis on operation status of Shenzhen Energy in the first half of 2012
CHAPTER Ⅸ ANALYSIS ON INVESTMENT AND PROSPECT OF WASTE-TO-ENERGY INDUSTRY
9.1 ANALYSIS ON INVESTMENT OPPORTUNITIES FOR ELECTRICITY GENERATION WITH WASTE
9.1.1 Analysis on investment return term of waste-to-energy plant
9.1.2 Analysis on return rate of waste-to-energy market
9.1.3 Investment opportunities hidden in electricity generation with waste
9.1.4 Giant commercial opportunities appear in electricity generation with waste
9.2 DEVELOPMENT PROSPECT OF WASTE-TO-ENERGY INDUSTRY OF CHINA
9.2.1 Waste-to-energy industry of China goes to application stage
9.2.2 Power generation with waste becomes a hopeful industry in the 21st Century
9.2.3 Huge development potential of waste-to-energy industry
APPENDICES: INTRODUCTIONS TO POLICIES AND STATUES RELATING TO WASTE-TO-ENERGY ELECTRICITY GENERATION
APPENDIX 1 CURRENT SYSTEM OF STANDARDS FOR WASTE TREATMENT IN CHINA
APPENDIX 2 POLLUTION CONTROL STANDARD FOR DOMESTIC WASTE INCINERATION
APPENDIX 3 NOTIFICATION FOR IMPLEMENTING THE CHARGING SYSTEM FOR URBAN DOMESTIC WASTE TO SPUR THE INDUSTRIALIZATION OF WASTE TREATMENT
APPENDIX 4 TECHNICAL POLICY FOR URBAN WASTE TREATMENT AND POLLUTION PREVENTION TECHNICAL POLICY
APPENDIX 5 NOTIONS FOR ADVANCING INDUSTRIALIZATION DEVELOPMENT OF URBAN SEWERAGE AND WASTE TREATMENT