Global Waste to Energy Market Surges at 8.1% CAGR 2013-2019

Transparency Market
Research
Waste to Energy Market - Global Industry Analysis, Size, Share, Growth, Trends and
Forecast, 2013 – 2019
Published Date
2014-06-25
64 Page Report
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Press Release
Waste to Energy Market is Expected to Reach USD 31,892.9
Million Globally by 2019
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Waste to Energy Market
REPORT DESCRIPTION
Transparency Market Research has released a new market report titled “Waste to Energy Market: Global Industry
Analysis, Size, Share, Growth, Trends and Forecast, 2013 - 2019,” that defines and segments the global waste to energy
market with analysis and forecast of the global revenues. This report observes that the annual revenue of the waste to
energy market was USD 18,472.3 million in 2012 and is expected to reach USD 31,892.9 million by 2019, growing at a
CAGR of 8.1% from 2013 to 2019.
Browse the Waste to Energy Market Report with Full TOC at http://www.transparencymarketresearch.com/wasteto-energy-market.html
Key technology segments analyzed in this study include thermal and biological. In 2012, thermal technology was the
largest segment in terms of revenue and accounted for more than 80% of the market share. Thermal segment is
witnessing increased demand owing to growing municipal solid waste and increased taxes on landfills. The ability of
thermal technology to reduce the amount of waste in terms of volume and weight being land filled has encouraged the use
of this technology. Biological technology prefers high moisture content and biodegradable feedstock. Farmers use this
method to process their farm waste and produce energy from it. Biological technology has higher growth rate than thermal
technology.
Asia Pacific dominated the global waste to energy market in 2012, and is the leading shareholder with over 40% global
market share in terms of revenue. Factors such as development and increasing disposable income in countries such as
China, Japan, and India are proving to be a boon for the market in the Asia Pacific region. Europe accounted for about
34% of the total volume share in 2012. Asia Pacific is a potential market for waste to energy and is expected to show
healthy growth over the forecast period.
Some of the key players in waste to energy market include C&G Environmental Protection Holdings Ltd., The Babcock &
Wilcox Company, China Everbright International Limited, Foster Wheeler AG, Constructions industrielles de la
Méditerranée (CNIM), Xcel Energy, Keppel Seghers, Veolia Environnement, Suez Environment S.A, and Waste
Management Inc.
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Waste to Energy Market
Waste to Energy Market : Technology Analysis
Thermal
Biological
Waste to Energy Market : Regional Analysis
North America
Europe
AsiaPacific
Rest of the World (RoW)
Table of Contents
Chapter 1 Preface
1.1 Report Description
1.2 Market Segmentation
1.3 Research Scope
1.4 Research Methodology
Chapter 2 Executive Summary
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Chapter 3 Waste to Energy: Industry Analysis
3.1 Introduction
3.2 Value chain analysis
3.2.1 Collection and Transportation
3.2.1.1 Collection
3.2.1.2 Transportation
3.2.2 Storage and Segregation
3.2.2.1 Inerts
3.2.2.2 Organic waste
3.2.2.3 Recyclable waste
3.2.3 Energy Generation
3.2.4 End use
3.3 Market Drivers
3.3.1 Growing concern towards energy security
3.3.2 Reduced GHG emission from landfills
3.3.3 Increasing regulatory support and funding/incentive
3.3.4 Tax increment on landfills
3.4 Restraints
3.4.1 High initial cost
3.5 Opportunities
3.5.1 Growing population and increasing disposable income enhancing waste generation
3.6 Porter’s five forces analysis
3.6.1 Bargaining powers of suppliers
3.6.2 Bargaining power of buyers
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Waste to Energy Market
3.6.3 Threat from new entrants
3.6.4 Threat from substitutes
3.6.5 Degree of competition
3.7 Market attractiveness analysis
3.7.1 Global Waste to Energy market attractiveness, by technology
Chapter 4 Waste to Energy: Technology Analysis
4.1 Waste to Energy Market: Technology analysis
4.2 Thermal
4.2.1 Waste to Energy thermal technology market estimates and forecasts, 2012 – 2019 (USD Million)
4.3 Biological
4.3.1 Waste to Energy biological technology market estimates and forecasts, 2012 – 2019 (USD Million)
Chapter 5 Waste to Energy: Regional Analysis
5.1 Waste to Energy Market: Regional analysis
5.1.1 Global Waste to Energy market revenue share, by region, 2012 and 2019
5.2 North America
5.2.1 North America Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
5.2.2 North America Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD
Million)
5.3 Europe
5.3.1 Europe Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
5.3.2 Europe Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD Million)
5.4 Asia Pacific
5.4.1 Asia Pacific Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
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Waste to Energy Market
5.4.2 Asia Pacific Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD
Million)
5.5 Rest of the World (RoW)
5.5.1 RoW Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
5.5.2 RoW Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD Million)
Chapter 6 Company Profile
6.1 C&G Environmental Protection Holdings Ltd
6.1.1 Company overview
6.1.2 Financial overview
6.1.3 Business strategy
6.1.4 SWOT analysis
6.1.5 Recent developments
6.2 China Everbright International Limited
6.2.1 Company overview
6.2.2 Product Portfolio
6.2.3 Financial overview
6.2.4 Business strategy
6.2.5 SWOT analysis
6.2.6 Recent developments
6.3 Constructions industrielles de la Méditerranée (CNIM)
6.3.1 Company overview
6.3.2 Product Portfolio
6.3.3 Financial overview
6.3.4 Business strategy
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Waste to Energy Market
6.3.5 SWOT analysis
6.3.6 Recent developments
6.4 Covanta Energy Corporation
6.4.1 1.1.1 Company Overview
6.4.2 Financial Overview
6.4.3 SWOT Analysis
6.4.4 Business Strategies
6.4.5 Recent Developments
6.5 Foster Wheeler AG
6.5.1 Company overview
6.5.2 Product Portfolio
6.5.3 Financial overview
6.5.4 Business strategy
6.5.5 SWOT analysis
6.5.6 Recent developments
6.6 KEPPEL SEGHERS
6.6.1 Company overview
6.6.2 Product Portfolio
6.6.3 Financial overview
6.6.4 Business strategy
6.6.5 SWOT analysis
6.6.6 Recent developments
6.7 Suez Environment S.A
6.7.1 Company overview
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Waste to Energy Market
6.7.2 Product Portfolio
6.7.3 Financial overview
6.7.4 Business strategy
6.7.5 SWOT analysis
6.7.6 Recent developments
6.8 The Babcock & Wilcox Company
6.8.1 Company overview
6.8.2 .Product Portfolio
6.8.3 Financial overview
6.8.4 Business strategy
6.8.5 SWOT analysis
6.8.6 Recent developments
6.9 Veolia Environnement
6.9.1 company overview
6.9.2 Financial Overview
6.9.3 Business Strategy
6.9.4 SWOT Analysis
6.9.5 Recent Developments
6.10 Waste Management, Inc.
6.10.1 Company overview
6.10.2 Financial overview
6.10.3 Business strategy
6.10.4 SWOT analysis
6.10.5 Recent Developments
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Waste to Energy Market
6.11 Xcel Energy
6.11.1 Company overview
6.11.2 Product Portfolio
6.11.3 Financial overview
6.11.4 Business strategy
6.11.5 SWOT analysis
6.11.6 Recent developments List of Figures
FIG. 1 Waste to Energy: Market segmentation
FIG. 2 Global Waste to Energy market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 3 Value Chain Analysis: Waste to Energy market
FIG. 4 Material Discarded in MSW (for landfill and WTE) in the U.S.,2011
FIG. 5 Porter’s five forces analysis: Waste to Energy market
FIG. 6 Global Waste to
FIG. 1 Waste to Energy: Market segmentation
FIG. 2 Global Waste to Energy market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 3 Value Chain Analysis: Waste to Energy market
FIG. 4 Material Discarded in MSW (for landfill and WTE) in the U.S.,2011
FIG. 5 Porter’s five forces analysis: Waste to Energy market
FIG. 6 Global Waste to Energy market, by technology
FIG. 7 Global Waste to Energy market revenue share, by technology, 2012 and 2019
FIG. 8 Waste to Energy thermal technology market estimates and forecasts, 2012 – 2019 (USD Million)
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Waste to Energy Market
FIG. 9 Waste to Energy biological technology market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 10 Global Waste to Energy market revenue share, by region, 2012 and 2019
FIG. 11 North America Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 12 Europe Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 13 North America Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
FIG. 14 RoW Waste to Energy regional market estimates and forecasts, 2012 – 2019 (USD Million)
List of Tables
TABLE 1 Global Waste to Energy market snapshot
TABLE 2 Drivers for Waste to Energy market: Impact analysis
TABLE 3 North America Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD
Million)
TABLE 4 Europe Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD Million)
TABLE 5 Asia Pacific Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD Million)
TABLE 6 RoW Waste to Energy market revenue estimates and forecasts, by technology, 2012 – 2019 (USD Million)
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Waste to Energy Market
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Transparency Market Research has published a new research report about the global waste to energy market. The research report, titled “Waste to Energy Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2013 - 2019,” provides a comprehensive outlook of the overall market. According to the document, the global waste to energy market was valued at US$18.4 bn in 2012 and is expected to reach US$31.8 bn by 2019. In a span of six years, between 2013 and 2019, the global waste to energy market is expected to surge at a pace of 8.1% CAGR. Waste to energy refers to methods used for converting solid waste or municipal waste in forms of energy. The waste generated from commercial, industrial, and domestic users is transformed into energy in the form of steam, electricity, and fuel cell. The global waste to energy market has been witnessing a positive growth rate due to the increasing pressure on the governments to reduce the volume to waste in order to control emissions from landfills.