Report Thumbnail
Product Code BW091190847D0H
Published Date 2023/6/10
English200 PagesGlobal

Global Waste-to-Energy Technologies Market Size study & Forecast, by Technology (Municipal Solid Waste (MSW) Incineration, Co-processing, Pyrolysis and Gasification and Other Technologies) and Regional Analysis, 2023-2030Energy_Environment Market


Report Thumbnail
Product Code BW091190847D0H◆The Jun 2025 edition is also likely available. We will check with the publisher immediately.
Published Date 2023/6/10
English 200 PagesGlobal

Global Waste-to-Energy Technologies Market Size study & Forecast, by Technology (Municipal Solid Waste (MSW) Incineration, Co-processing, Pyrolysis and Gasification and Other Technologies) and Regional Analysis, 2023-2030Energy_Environment Market



Abstract


Summary

Global Waste-to-Energy Technologies Market is valued at approximately USD XX billion in 2022 and is anticipated to grow with a healthy growth rate of more than xx% over the forecast period 2023-2030. Waste-to-energy technologies are methods that involve the conversion of waste materials, such as municipal solid waste (MSW), industrial waste, and agricultural waste, into energy. This process helps to reduce the amount of waste that ends up in landfills and provides a source of renewable energy. Waste-to-energy technologies offer several benefits, including reducing the amount of waste sent to landfills, generating renewable energy, and reducing greenhouse gas emissions. The Waste-to-Energy Technologies market is expanding because of factors such as rising waste generation and supportive government initiatives and efforts to reduce dumps and open burning of waste. The rising amount of waste generation is driving the market growth, according to the world bank organization The amount of waste produced annually around the world is predicted to rise dramatically from 2.01 billion tons in the year 2020 to 3.40 billion tons by 2050. Along with these the organisation also estimates that in both developed and emerging nations, daily per capita trash generation is anticipated to rise by 40%. The requirement to stabilize future waste could lead to a rise in the use of waste-to-energy technology. In addition, rising technological advancement and rising investment n number of projects for the industry growth is creating lucrative growth in the market. However, the high cost of Waste-to-Energy Technologies stifles market growth throughout the forecast period of 2023-2030. The key regions considered for the Global Waste-to-Energy Technologies Market study includes Asia Pacific, North America, Europe, Latin America, and Middle East & Africa. Europe dominated the market in 2022 owing to the dominance of the rising adoption of waste management technology, and government support to the industry. Asia Pacific is expected to grow with the highest CAGR during the forecast period, owing to factors such as rising waste generation, and rising construction of dumps and waste treatment in the region. Major market player included in this report are: Babcock & Wilcox Enterprises Inc. Ramboll Group AS Veolia Group Babcock & Wilcox Volund AS Hitachi Zosen Inova AG Suez Environnement China Everbright International Limited Covanta Holding Corporation Amec Foster Wheeler PLC Abu Dhabi National Energy Company PJSC (Taqa) Recent Developments in the Market:  In July 2022, the Municipal Corporation of Delhi (MCD) officially announced the establishment of a fourth waste-to-energy facility in the region. The plant will use 2,000 tons of municipal solid waste (MSW) that are dumped at the Okhla landfill site every day to produce 25 megawatts (MW) of electricity. Global Waste-to-Energy Technologies Market Report Scope:  Historical Data – 2020 - 2021  Base Year for Estimation – 2022  Forecast period - 2023-2030  Report Coverage - Revenue forecast, Company Ranking, Competitive Landscape, Growth factors, and Trends  Segments Covered - Technology, Region  Regional Scope - North America; Europe; Asia Pacific; Latin America; Middle East & Africa  Customization Scope - Free report customization (equivalent up to 8 analyst’s working hours) with purchase. Addition or alteration to country, regional & segment scope* The objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within countries involved in the study. The report also caters detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, it also incorporates potential opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and Technology offerings of key players. The detailed segments and sub-segment of the market are explained below: By Technology: Municipal Solid Waste (MSW) Incineration Co-processing Pyrolysis and Gasification Other Technologies By Region: North America U.S. Canada Europe UK Germany France Spain Italy ROE Asia Pacific China India Japan Australia South Korea RoAPAC Latin America Brazil Mexico Middle East & Africa Saudi Arabia South Africa Rest of Middle East & Africa

Table of Contents

  • 1 Executive Summary

    • 1.1 Market Snapshot
    • 1.2 Global & Segmental Market Estimates & Forecasts, 2020-2030 (USD Billion)
      • 1.2.1 Waste-to-Energy Technologies Market, by Region, 2020-2030 (USD Billion)
      • 1.2.2 Waste-to-Energy Technologies Market, by Technology, 2020-2030 (USD Billion)
    • 1.3 Key Trends
    • 1.4 Estimation Methodology
    • 1.5 Research Assumption
  • 2 Global Waste-to-Energy Technologies Market Definition and Scope

    • 2.1 Objective of the Study
    • 2.2 Market Definition & Scope
      • 2.2.1 Industry Evolution
      • 2.2.2 Scope of the Study
    • 2.3 Years Considered for the Study
    • 2.4 Currency Conversion Rates
  • 3 Global Waste-to-Energy Technologies Market Dynamics

    • 3.1 Waste-to-Energy Technologies Market Impact Analysis (2020-2030)
      • 3.1.1 Market Drivers
        • 3.1.1.1 Rising waste generation
        • 3.1.1.2 supportive government initiatives and efforts to reduce dumps and open burning of waste
      • 3.1.2 Market Challenges
        • 3.1.2.1 High Cost of Waste-to-Energy Technologies
      • 3.1.3 Market Opportunities
        • 3.1.3.1 Rising technological advancement
        • 3.1.3.2 Rising investments in number of waste to energy projects
  • 4 Global Waste-to-Energy Technologies Market Industry Analysis

    • 4.1 Porter’s 5 Force Model
      • 4.1.1 Bargaining Power of Suppliers
      • 4.1.2 Bargaining Power of Buyers
      • 4.1.3 Threat of New Entrants
      • 4.1.4 Threat of Substitutes
      • 4.1.5 Competitive Rivalry
    • 4.2 Porter’s 5 Force Impact Analysis
    • 4.3 PEST Analysis
      • 4.3.1 Political
      • 4.3.2 Economical
      • 4.3.3 Social
      • 4.3.4 Technological
      • 4.3.5 Environmental
      • 4.3.6 Legal
    • 4.4 Top investment opportunity
    • 4.5 Top winning strategies
    • 4.6 COVID-19 Impact Analysis
    • 4.7 Disruptive Trends
    • 4.8 Industry Expert Perspective
    • 4.9 Analyst Recommendation & Conclusion
  • 5 Global Waste-to-Energy Technologies Market, by Technology

    • 5.1 Market Snapshot
    • 5.2 Global Waste-to-Energy Technologies Market by Technology, Performance - Potential Analysis
    • 5.3 Global Waste-to-Energy Technologies Market Estimates & Forecasts by Technology 2020-2030 (USD Billion)
    • 5.4 Waste-to-Energy Technologies Market, Sub Segment Analysis
      • 5.4.1 Municipal Solid Waste (MSW) Incineration
      • 5.4.2 Co-processing
      • 5.4.3 Pyrolysis and Gasification
      • 5.4.4 Other Technologies
  • 6 Global Waste-to-Energy Technologies Market, Regional Analysis

    • 6.1 Top Leading Countries
    • 6.2 Top Emerging Countries
    • 6.3 Waste-to-Energy Technologies Market, Regional Market Snapshot
    • 6.4 North America Waste-to-Energy Technologies Market
      • 6.4.1 U.S. Waste-to-Energy Technologies Market
        • 6.4.1.1 Technology breakdown estimates & forecasts, 2020-2030
      • 6.4.2 Canada Waste-to-Energy Technologies Market
    • 6.5 Europe Waste-to-Energy Technologies Market Snapshot
      • 6.5.1 U.K. Waste-to-Energy Technologies Market
      • 6.5.2 Germany Waste-to-Energy Technologies Market
      • 6.5.3 France Waste-to-Energy Technologies Market
      • 6.5.4 Spain Waste-to-Energy Technologies Market
      • 6.5.5 Italy Waste-to-Energy Technologies Market
      • 6.5.6 Rest of Europe Waste-to-Energy Technologies Market
    • 6.6 Asia-Pacific Waste-to-Energy Technologies Market Snapshot
      • 6.6.1 China Waste-to-Energy Technologies Market
      • 6.6.2 India Waste-to-Energy Technologies Market
      • 6.6.3 Japan Waste-to-Energy Technologies Market
      • 6.6.4 Australia Waste-to-Energy Technologies Market
      • 6.6.5 South Korea Waste-to-Energy Technologies Market
      • 6.6.6 Rest of Asia Pacific Waste-to-Energy Technologies Market
    • 6.7 Latin America Waste-to-Energy Technologies Market Snapshot
      • 6.7.1 Brazil Waste-to-Energy Technologies Market
      • 6.7.2 Mexico Waste-to-Energy Technologies Market
    • 6.8 Middle East & Africa Waste-to-Energy Technologies Market
      • 6.8.1 Saudi Arabia Waste-to-Energy Technologies Market
      • 6.8.2 South Africa Waste-to-Energy Technologies Market
      • 6.8.3 Rest of Middle East & Africa Waste-to-Energy Technologies Market
  • 7 Competitive Intelligence

    • 7.1 Key Company SWOT Analysis
      • 7.1.1 Company 1
      • 7.1.2 Company 2
      • 7.1.3 Company 3
    • 7.2 Top Market Strategies
    • 7.3 Company Profiles
      • 7.3.1 Babcock & Wilcox Enterprises Inc
        • 7.3.1.1 Key Information
        • 7.3.1.2 Overview
        • 7.3.1.3 Financial (Subject to Data Availability)
        • 7.3.1.4 Product Summary
        • 7.3.1.5 Recent Developments
      • 7.3.2 Ramboll Group AS
      • 7.3.3 Veolia Group
      • 7.3.4 Babcock & Wilcox Volund AS
      • 7.3.5 Hitachi Zosen Inova AG
      • 7.3.6 Suez Environnement
      • 7.3.7 China Everbright International Limited
      • 7.3.8 Covanta Holding Corporation
      • 7.3.9 Amec Foster Wheeler PLC
      • 7.3.10 Abu Dhabi National Energy Company PJSC (Taqa)
  • 8 Research Process

    • 8.1 Research Process
      • 8.1.1 Data Mining
      • 8.1.2 Analysis
      • 8.1.3 Market Estimation
      • 8.1.4 Validation
      • 8.1.5 Publishing
    • 8.2 Research Attributes
    • 8.3 Research Assumption
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Global Waste-to-Energy Technologies Market Size study & Forecast, by Technology (Municipal Solid Waste (MSW) Incineration, Co-processing, Pyrolysis and Gasification and Other Technologies) and Regional Analysis, 2023-2030 | Energy_Environment Market Research Report - ShareFair Markets