China Waste-to-Energy Technologies Industry Market Research Report 2023-2029

  • REPORT SUMMARY
  • TABLE OF CONTENTS
  • Waste-to-Energy (WTE) technology utilizes Municipal Solid Waste (MSW) to create electric and heat energy through various complex conversion methodsWTE technology provides an alternative source of renewable energy in a world with limited or challenged fossil reserves.MSW is considered a source of renewable energy because it contains a large amount of biological and renewable materials.WTE (Waste-to-Energy) is the process of generating energy in the form of electricity and/or heat from the primary treatment of waste. WTE is a form of energy recovery. Most WTE processes produce electricity and/or heat directly through combustion, or produce a combustible fuel commodity, such as methane, methanol, ethanol or synthetic fuels.

    Due to economic development and rapid urbanization, the production of municipal solid waste has been increasing rapidly. Therefore, effective treatment of municipal solid waste has become a serious environmental challenge facing the world.

    Increasing waste generation and attention to its management to meet the needs of sustainable urban life, and increasing attention to non-fossil fuel energy are driving the adoption of waste-to-energy technology markets.

    This report elaborates on the current development of the Waste-to-Energy Technologies industry thoroughly based on the international market dynamics and China's market situation.

    For a start, the report provides an in-depth analysis of the current market situation through three different aspects - by region, by type and by application, which includes market distribution of different types and applications, import and export analysis of major regions, development trends of different types of products in each region, market opportunities and market restrains of different applications.

    Secondly, this report lists the major players in the industry, displaying their market positions and strengths and weaknesses of their products, picturing the current competitive situation of the whole market. 

    Last but not least, the report analyzes and predicts the investment prospects and risks in the industry on the basis of industry data, combined with experts' opinions and suggestions.

    By Player:

    • Attero

    • Covanta

    • Suez

    • Shenzhen Energy

    • China Everbright

    • Veolia

    • EEW Efw

    • City of Kobe

    • Wheelabrator

    • CA Tokyo 23

    • MCC

    • Tianjin Teda

    • MVV Energie

    • AVR

    • Viridor

    • Osaka City Hall

    • A2A

    • NEAS

    By Type:

    • Biochemical Reactions

    • Thermal Technologies

    By Application:

    • Power Plant

    • Others

    • Heating Plant

    By Research Region:

    • North China

    • Central China

    • South China

    • East China

    • Northeast China

    • Southwest China

    • Northwest China

  • TABLE OF CONTENT

    Chapter 1 China Waste-to-Energy Technologies Market Overview 2018-2029

    • 1.1 China Waste-to-Energy Technologies Industry Development Overview

    • 1.2 China Waste-to-Energy Technologies Industry Development History

    • 1.3 China Waste-to-Energy Technologies Industry Market Size (2018-2029)

    • 1.4 China Waste-to-Energy Technologies Market Analysis by Type from Production Side

      • 1.4.1 China Waste-to-Energy Technologies Production Volume, Production Value and Growth Rate of Biochemical Reactions (2018-2029)

      • 1.4.2 China Waste-to-Energy Technologies Production Volume, Production Value and Growth Rate of Thermal Technologies (2018-2029)

    • 1.5 China Waste-to-Energy Technologies Market Analysis by Application from Consumption End

      • 1.5.1 China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Power Plant (2018-2029)

      • 1.5.2 China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Others (2018-2029)

      • 1.5.3 China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Heating Plant (2018-2029)

    • 1.6 China Waste-to-Energy Technologies Market Analysis by Region

      • 1.6.1 North China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.2 Central China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.3 South China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.4 East China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.5 Northeast China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.6 Southwest China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

      • 1.6.7 Northwest China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    Chapter 2 China Waste-to-Energy Technologies Industry Development Environment

    • 2.1 Industry Development Environment Analysis

      • 2.1.1 Industry Technological Progress Analysis

      • 2.1.2 Industrial Organizational Innovation Analysis

      • 2.1.3 Changes in Social Habits

      • 2.1.4 Alterations in Government Policies

      • 2.1.5 Impact of Economic Globalization

    • 2.2 Domestic and Foreign Industry Competition Analysis

      • 2.2.1 Comparative Analysis on Waste-to-Energy Technologies Market Status and Competition at home and abroad in 2023

      • 2.2.2 China Waste-to-Energy Technologies Market Status and Competition Analysis in 2023

      • 2.2.3 China Waste-to-Energy Technologies Market Concentration Analysis in 2023

    • 2.3 Problems and Countermeasures in the development of China Waste-to-Energy Technologies Industry

      • 2.3.1 Industry Development Constraints

      • 2.3.2 Industry Development Considerations

      • 2.3.3 Suggestions on Industry Development Measures

      • 2.3.4 Development Strategies for SMEs

    • 2.4 Influence of COVID-19 Outbreak on Waste-to-Energy Technologies Industry Development

    Chapter 3 Waste-to-Energy TechnologiesIndustry Chain Analysis

    • 3.1 Waste-to-Energy Technologies Industry Chain

    • 3.2 Waste-to-Energy Technologies Upstream Industry Analysis

      • 3.2.1 Upstream Industry Development Status

      • 3.2.2 Upstream Industry Development Forecast

      • 3.2.3 Impact of Upstream Industry on the Waste-to-Energy Technologies Market

    • 3.3 Waste-to-Energy Technologies Downstream Industry Analysis

      • 3.3.1 Downstream Industry Development Status

      • 3.3.2 Downstream Industry Development Forecast

      • 3.3.3 Impact of Downstream Industry on the Waste-to-Energy Technologies Market

    Chapter 4 China Waste-to-Energy Technologies Market, by Type

    • 4.1 China Waste-to-Energy Technologies Market Trend, by Type

    • 4.2 Product Types of Major Suppliers

    • 4.3 Competitive Landscape of Major Types

    • 4.4 China Waste-to-Energy Technologies Total Production Volume and Growth Rate from Production Side

    • 4.5 China Waste-to-Energy Technologies Production Volume and Growth Rate, by Type

      • 4.5.1 China Waste-to-Energy Technologies Production Volume and Growth Rate of Biochemical Reactions

      • 4.5.2 China Waste-to-Energy Technologies Production Volume and Growth Rate of Thermal Technologies

    Chapter 5 China Waste-to-Energy Technologies Market, by Application

    • 5.1 Downstream Market Overview

    • 5.2 Competitive Landscape of Major Applications

    • 5.3 Market Potential Analysis, by Application

    • 5.4 China Waste-to-Energy Technologies Total Market Size and Growth Rate from Consumption End

    • 5.5 China Waste-to-Energy Technologies Market Size and Growth Rate, by Application

      • 5.5.1 China Waste-to-Energy Technologies Market Size and Growth Rate of Power Plant

      • 5.5.2 China Waste-to-Energy Technologies Market Size and Growth Rate of Others

      • 5.5.3 China Waste-to-Energy Technologies Market Size and Growth Rate of Heating Plant

    Chapter 6 China Waste-to-Energy Technologies Market, by Region

    • 6.1 China Waste-to-Energy Technologies Production Volume and Production Value, by Region

    • 6.2 China Waste-to-Energy Technologies Sales Volume and Sales Value, by Region

    Chapter 7 North China Waste-to-Energy Technologies Market Analysis

    • 7.1 North China Waste-to-Energy Technologies Market, by Type

    • 7.2 North China Waste-to-Energy Technologies Market, by Application

    Chapter 8 Central China Waste-to-Energy Technologies Market Analysis

    • 8.1 Central China Waste-to-Energy Technologies Market, by Type

    • 8.2 Central China Waste-to-Energy Technologies Market, by Application

    Chapter 9 South China Waste-to-Energy Technologies Market Analysis

    • 9.1 South China Waste-to-Energy Technologies Market, by Type

    • 9.2 South China Waste-to-Energy Technologies Market, by Application

    Chapter 10 East China Waste-to-Energy Technologies Market Analysis

    • 10.1 East China Waste-to-Energy Technologies Market, by Type

    • 10.2 East China Waste-to-Energy Technologies Market, by Application

    Chapter 11 Northeast China Waste-to-Energy Technologies Market Analysis

    • 11.1 Northeast China Waste-to-Energy Technologies Market, by Type

    • 11.2 Northeast China Waste-to-Energy Technologies Market, by Application

    Chapter 12 Southwest China Waste-to-Energy Technologies Market Analysis

    • 12.1 Southwest China Waste-to-Energy Technologies Market, by Type

    • 12.2 Southwest China Waste-to-Energy Technologies Market, by Application

    Chapter 13 Northwest China Waste-to-Energy Technologies Market Analysis

    • 13.1 Northwest China Waste-to-Energy Technologies Market, by Type

    • 13.2 Northwest China Waste-to-Energy Technologies Market, by Application

    Chapter 14 Company Profiles

      • 14.1 Attero

        • 14.1.1 Attero Company Profile

        • 14.1.2 Attero Waste-to-Energy Technologies Market Performance

        • 14.1.3 Product&Service Introduction

      • 14.2 Covanta

        • 14.2.1 Covanta Company Profile

        • 14.2.2 Covanta Waste-to-Energy Technologies Market Performance

        • 14.2.3 Product&Service Introduction

      • 14.3 Suez

        • 14.3.1 Suez Company Profile

        • 14.3.2 Suez Waste-to-Energy Technologies Market Performance

        • 14.3.3 Product&Service Introduction

      • 14.4 Shenzhen Energy

        • 14.4.1 Shenzhen Energy Company Profile

        • 14.4.2 Shenzhen Energy Waste-to-Energy Technologies Market Performance

        • 14.4.3 Product&Service Introduction

      • 14.5 China Everbright

        • 14.5.1 China Everbright Company Profile

        • 14.5.2 China Everbright Waste-to-Energy Technologies Market Performance

        • 14.5.3 Product&Service Introduction

      • 14.6 Veolia

        • 14.6.1 Veolia Company Profile

        • 14.6.2 Veolia Waste-to-Energy Technologies Market Performance

        • 14.6.3 Product&Service Introduction

      • 14.7 EEW Efw

        • 14.7.1 EEW Efw Company Profile

        • 14.7.2 EEW Efw Waste-to-Energy Technologies Market Performance

        • 14.7.3 Product&Service Introduction

      • 14.8 City of Kobe

        • 14.8.1 City of Kobe Company Profile

        • 14.8.2 City of Kobe Waste-to-Energy Technologies Market Performance

        • 14.8.3 Product&Service Introduction

      • 14.9 Wheelabrator

        • 14.9.1 Wheelabrator Company Profile

        • 14.9.2 Wheelabrator Waste-to-Energy Technologies Market Performance

        • 14.9.3 Product&Service Introduction

      • 14.10 CA Tokyo 23

        • 14.10.1 CA Tokyo 23 Company Profile

        • 14.10.2 CA Tokyo 23 Waste-to-Energy Technologies Market Performance

        • 14.10.3 Product&Service Introduction

      • 14.11 MCC

        • 14.11.1 MCC Company Profile

        • 14.11.2 MCC Waste-to-Energy Technologies Market Performance

        • 14.11.3 Product&Service Introduction

      • 14.12 Tianjin Teda

        • 14.12.1 Tianjin Teda Company Profile

        • 14.12.2 Tianjin Teda Waste-to-Energy Technologies Market Performance

        • 14.12.3 Product&Service Introduction

      • 14.13 MVV Energie

        • 14.13.1 MVV Energie Company Profile

        • 14.13.2 MVV Energie Waste-to-Energy Technologies Market Performance

        • 14.13.3 Product&Service Introduction

      • 14.14 AVR

        • 14.14.1 AVR Company Profile

        • 14.14.2 AVR Waste-to-Energy Technologies Market Performance

        • 14.14.3 Product&Service Introduction

      • 14.15 Viridor

        • 14.15.1 Viridor Company Profile

        • 14.15.2 Viridor Waste-to-Energy Technologies Market Performance

        • 14.15.3 Product&Service Introduction

      • 14.16 Osaka City Hall

        • 14.16.1 Osaka City Hall Company Profile

        • 14.16.2 Osaka City Hall Waste-to-Energy Technologies Market Performance

        • 14.16.3 Product&Service Introduction

      • 14.17 A2A

        • 14.17.1 A2A Company Profile

        • 14.17.2 A2A Waste-to-Energy Technologies Market Performance

        • 14.17.3 Product&Service Introduction

      • 14.18 NEAS

        • 14.18.1 NEAS Company Profile

        • 14.18.2 NEAS Waste-to-Energy Technologies Market Performance

        • 14.18.3 Product&Service Introduction

    Chapter 15 Research Conclusions and Investment Suggestions

    • 15.1 Waste-to-Energy Technologies Industry Research Conclusions

    • 15.2 Waste-to-Energy Technologies Industry Investment Suggestions

      • 15.2.1 Suggestions on Industry Development Strategy

      • 15.2.2 Suggestions on Industry Investment Direction

      • 15.2.3 Suggestions on Industry Investment Strategy


    List of Tables and Figures

    • Figure China Waste-to-Energy Technologies Industry Market Size (2018-2029)

    • Figure China Waste-to-Energy Technologies Production Volume, Production Value and Growth Rate of Biochemical Reactions (2018-2029)

    • Figure China Waste-to-Energy Technologies Production Volume, Production Value and Growth Rate of Thermal Technologies (2018-2029)

    • Figure China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Power Plant (2018-2029)

    • Figure China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Others (2018-2029)

    • Figure China Waste-to-Energy Technologies Sales Volume, Sales Value and Growth Rate of Heating Plant (2018-2029)

    • Figure North China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure Central China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure South China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure East China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure Northeast China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure Southwest China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure Northwest China Waste-to-Energy Technologies Market Size and Growth Rate from 2018-2029

    • Figure Waste-to-Energy Technologies Industry Chain

    • Table Product Types of Major Suppliers in 2023

    • Figure China Waste-to-Energy Technologies Market Share by Type in 2018

    • Figure China Waste-to-Energy Technologies Market Share by Type in 2023

    • Figure China Waste-to-Energy Technologies Total Production Volume and Growth Rate from Production Side (2018-2023)

    • Figure China Waste-to-Energy Technologies Production Volume and Growth Rate of Biochemical Reactions (2018-2023)

    • Figure China Waste-to-Energy Technologies Production Volume and Growth Rate of Thermal Technologies (2018-2023)

    • Figure China Waste-to-Energy Technologies Market Share by Application in 2018

    • Figure China Waste-to-Energy Technologies Market Share by Application in 2023

    • Figure China Waste-to-Energy Technologies Total Market Size and Growth Rate from Consumption End

    • Figure China Waste-to-Energy Technologies Market Size and Growth Rate of Power Plant (2018-2023)

    • Figure China Waste-to-Energy Technologies Market Size and Growth Rate of Others (2018-2023)

    • Figure China Waste-to-Energy Technologies Market Size and Growth Rate of Heating Plant (2018-2023)

    • Table China Waste-to-Energy Technologies Production Volume by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Production Volume Share by Region (2018-2023)

    • Figure China Waste-to-Energy Technologies Production Volume Share by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Production Value by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Production Value Share by Region (2018-2023)

    • Figure China Waste-to-Energy Technologies Production Value Share by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Sales Volume by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Sales Volume Share by Region (2018-2023)

    • Figure China Waste-to-Energy Technologies Sales Volume Share by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Sales Value by Region (2018-2023)

    • Table China Waste-to-Energy Technologies Sales Value Share by Region (2018-2023)

    • Figure China Waste-to-Energy Technologies Sales Value Share by Region (2018-2023)

    • Table North China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table North China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure North China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table North China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table North China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure North China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table Central China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table Central China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure Central China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table Central China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table Central China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure Central China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table South China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table South China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure South China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table South China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table South China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure South China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table East China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table East China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure East China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table East China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table East China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure East China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table Northeast China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table Northeast China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure Northeast China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table Northeast China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table Northeast China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure Northeast China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table Southwest China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table Southwest China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure Southwest China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table Southwest China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table Southwest China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure Southwest China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table Northwest China Waste-to-Energy Technologies Production Volume by Type (2018-2023)

    • Table Northwest China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Figure Northwest China Waste-to-Energy Technologies Production Volume Share by Type (2018-2023)

    • Table Northwest China Waste-to-Energy Technologies Sales Volume by Application (2018-2023)

    • Table Northwest China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Figure Northwest China Waste-to-Energy Technologies Sales Volume Share by Application (2018-2023)

    • Table Attero Company Profile

    • Table Attero Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Covanta Company Profile

    • Table Covanta Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Suez Company Profile

    • Table Suez Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Shenzhen Energy Company Profile

    • Table Shenzhen Energy Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table China Everbright Company Profile

    • Table China Everbright Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Veolia Company Profile

    • Table Veolia Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table EEW Efw Company Profile

    • Table EEW Efw Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table City of Kobe Company Profile

    • Table City of Kobe Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Wheelabrator Company Profile

    • Table Wheelabrator Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table CA Tokyo 23 Company Profile

    • Table CA Tokyo 23 Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table MCC Company Profile

    • Table MCC Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Tianjin Teda Company Profile

    • Table Tianjin Teda Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table MVV Energie Company Profile

    • Table MVV Energie Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table AVR Company Profile

    • Table AVR Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Viridor Company Profile

    • Table Viridor Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table Osaka City Hall Company Profile

    • Table Osaka City Hall Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table A2A Company Profile

    • Table A2A Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)

    • Table NEAS Company Profile

    • Table NEAS Waste-to-Energy Technologies Revenue, Price and Gross (2018-2023)


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