Market Study: Waste-to-Energy Market CAGR Status, Management Including | Product Analysis, Industry Demand, Key Players and Regions, Forecast 2019-2023

Waste-to-Energy

The Waste-to-Energy Market Report 2019-2023 focuses on the global Waste-to-Energy status, future forecast, growth opportunity, key market, and key players. 

The Waste-to-Energy Market report studies the global market size of Waste-to-Energy in key regions like North America, Europe, Asia Pacific, Central & South America, and the Middle East & Africa focuses on the consumption of Waste-to-Energy in these regions. This research report categorizes the global Waste-to-Energy market by players/brands, region, type, and application. This report also studies the global market status, competition landscape, market share, growth rate, future trends, market drivers, opportunities and challenges, sales channels, distributors and Porters Five Forces Analysis.

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The various contributors involved in the value chain of Waste-to-Energy include manufacturers, suppliers, distributors, intermediaries, and customers.

The Key Players covered in this study:-

  • Mitsubishi Heavy Industries
  • Ltd.
  • Waste Management
  • Inc.
  • A2A S.p.A.
  • Veolia
  • Hitachi Zosen Inova AG
  • MVV Energie AG
  • Keppel Seghers
  • Babcock & Wilcox Vølund A/S
  • Ramboll Group A/S
  • ARX Arcillex S.A.
  • Xcel Energy Inc.
  • Wheelabrator Technologies Inc.
  • Covanta Holding Corporation

Overview of Waste-to-Energy Market Research Report 2019-2023:-

The increasing municipal solid waste (MSW) in the fast-growing cities of developing and emerging nations have resulted in increasing public concerns pertaining to the subsequent health and environmental impacts. At present, the waste of about 3 billion people, that is, approximately 70% of MSW, still ends up on landfills or uncontrolled dumpsites, which often contaminate surface water, ground water, or soil, and emit greenhouse gases. Municipal solid waste management (MSWM) is gaining importance on the local political agenda, as citizens and decision makers have become more sensitive to environmental pollution and its impact on the quality of life.

Waste-to-Energy (WtE) technologies are being presented as an attractive option, to solve not only the pressing waste disposal problems but several other challenges simultaneously, including shortages in power generation, limited space for landfills, and greenhouse gas (GHG) emissions from inappropriate waste disposal. However, the introduction of WtE technologies is often jeopardized, by missing tariff systems to fund investments and operation costs, weak enforcement of environmental laws, and limited qualified staff to run the installed systems in an effective and efficient manner.

The increasing use of renewable energy sources, rising quantity of global waste generation, waste management regulations, taxes and subsidies, climate change policies to curb GHG emissions, and technological advancements are some of the major factors driving the global waste-to-energy market. The recent global trends, such as environmental degradation, green business models, and improved public perception of waste to energy are the other factors that are expected to influence the market during the forecast period.

Asia-Pacific is the Fastest Growing Segment

Asia-Pacific has the fastest-growing population in the world, and has recorded a growth of about 25-30% over the past two decades. By 2050, the urban population in Asia-Pacific is expected to account for more than 50% of the total regional population. Across the globe, more than 10 billion metric ton of solid waste is generated annually, from urban households, commercial activities, industries, and construction, of which, Asia-Pacific accounts for approximately 20-25%. This share is projected to increase to over 50% of global solid waste production, by 2030.

Asia-Pacific is facing complex waste streams, including e-waste, food waste, construction & demolition (C&D) waste, disaster waste, and marine litter. Owing to the presence of the most populous nations, such as China and India, the region is one of the largest generators of municipal solid waste in the world. These countries are among the top five e-waste generating countries in the world. Therefore, owing to the major expansions in China and India, coupled with increasing government initiatives to promote sustainable energy generation, the region is expected to offer significant growth potential during the forecast period.

Argentina to Offer Considerable Potential for Waste-to-Energy Plants and Services

The coverage of waste management services is quite high in the country, covering approximately 89% of the population, and the nation boasts a trash collection rate of 99.8%. The Metropolitan Area of Buenos Aires, one of the most populous places in Argentina, generates over 16,000 metric tons of waste every day. Most of the recovered waste is disposed in sanitary landfills. Out of the four sanitary landfills created by the Coordinadora Ecológica Área Metropolitana Sociedad del Estados (CEAMSE), one has already been closed, and two more are scheduled for closure in the near future. The situation needs to be addressed with an amicable solution, which has to be selected from new waste management alternatives, one of which is energy recovery. Therefore, there is a considerable potential in the country for the waste-to-energy plants and services, as the capacities of landfills are limited.

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Reasons to Purchase this Report

  • Current and future waste-to-energy market outlook in the developed and emerging markets.
  • Analyzing various perspectives of the market, with the help of Porter’s five forces analysis.
  • The segment that is expected to dominate the market.
  • The countries that are expected to witness the fastest growth during the forecast period.
  • Identify the latest developments, market shares, and strategies employed by the major market players.
  • 3 months analyst support along with the Market Estimate sheet (in excel).

    Key questions answered in the Waste-to-Energy Market Report are.

    • What will the market size be in 2023 and what will the growth rate be?
    • What are the key market trends?
    • What is driving this market?
    • What are the challenges to market growth?
    • Who are the key vendors in this market space?
    • What are the market opportunities and threats faced by the key vendors?
    • What are the strengths and weaknesses of the key vendors? 

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    This report includes the estimation of market size for value (million US$) and volume (K Units). Both top-down and bottom-up approaches have been used to estimate and validate the market size of Waste-to-Energy market, to estimate the size of various other dependent submarkets in the overall market. Key players in the market have been identified through secondary research, and their market shares have been determined through primary and secondary research. All percentage shares, splits, and breakdowns have been determined using secondary sources and verified primary sources.

    “We also can offer customized report to fulfill special requirements of our clients. Regional and Countries report can be provided as well.”

    Major Points from TOC of Waste-to-Energy Market Research Report 2019-2023:

    1. INTRODUCTION
      1 Study Deliverables
      1.2 Study Assumptions
      1.3 Scope of the Study
    1. RESEARCH METHODOLOGY
    1. EXECUTIVE SUMMARY
    1. MARKET DYNAMICS
      1 Drivers
      4.1.1 Rise in Defence Expenditure of Many Countries
      4.1.2 Increasing Demand of Lightweight Materials in the Industry
      4.2 Restraints
      4.2.1 Need for High Investments in R&D
      4.2.2 Other Restraints
      4.3 Industry Value-Chain Analysis
      4.4 Porters 5 Force Analysis
      4.4.1 Bargaining Power of Suppliers
      4.4.2 Bargaining Power of Consumers
      4.4.3 Threat of New Entrants
      4.4.4 Threat of Substitute Products and Services
      4.4.5 Degree of Competition
      4.5 Price Analysis
    1. MARKET SEGMENTATION
      1 By Application
      5.2 End-user Sector
      5.2.1 Residential
      5.2.2 Commercial
      5.2.3 Institutional
      5.3 Geography
      5.3.1 Asia-Pacific
      5.3.2 North America
      5.3.3 Europe
      5.3.4 South America
      5.3.5 the Middle East & Africa

      Continued…

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