NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET 2019-2027

Energy, Power & Utilities | Utilities

NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET 2019-2027

Market By Technology, Type Of Waste, Municipal Solid Waste (MSW), Application, And Geography | Forecast 2019-2027

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Triton has concluded the North American waste-to-energy market to grow with a CAGR of 6.96% in the forecasting years of 2019-2027.

The countries assessed in the North America market for waste-to-energy are:

•    The United States

•    Canada

As a result of the massive quantities of waste generated in the US, North America has become one of the largest regions generating waste, globally. Unfortunately, WtE technologies in the region have not yet developed at the same rate at the waste generated in the region. There is a lack of suitable policies and regulations concerning WtE in the region. However, the North American market holds immense potential for growth in the coming years, due to the decrease in the availability of space for landfilling and the shift toward renewable energy development. 

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The United States has been one of the leading adopters of WtE technologies in the world; however, in comparison with other nations, the size of the WtE market in the US is extremely small. The country primarily uses landfilling to process the municipal solid waste it generates. However, the diminishing available space for landfilling and the increasing environmental hazards of landfills have urged the adoption of WtE technologies in the US.

According to the life cycle emission analysis by the US Environmental Protection Agency, waste-to-energy facilities help in reducing the presence of greenhouse gases. The presence of greenhouse gases reduces by a certain margin for each ton of municipal waste that is incinerated. This has led to the government introducing numerous favorable initiatives, such as the Energy Policy Act of 2005, the Federal Power Act in 2010, the American Jobs Creation Act in 2006, and the American Tax Payer Relief Act in 2012.

Covanta Holding Corporation is a company providing sustainable solutions for waste and energy. It is also involved in other businesses concerning waste disposal and renewable energy. The company offers solutions for electronic waste recycling, municipal solid waste treatment, and treatment of non-hazardous materials. Covanta Holding owns WtE facilities and operates infrastructure for converting waste-to-energy; it also owns facilities for generating energy and other facilities producing renewable energy in North America. The US-based company is headquartered in Morristown, New Jersey, and has an employee strength of over 3500. Covanta acquired Chief Industrial Services in January 2016.

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Table of Content

1.    NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET – SUMMARY

2.    INDUSTRY OUTLOOK

2.1. MARKET DEFINITION

2.2. KEY INSIGHTS

2.2.1. DATA ANALYTICS & BIG DATA OPTIMIZING WASTE MANAGEMENT VALUE CHAIN

2.2.2. INCINERATION – KEY THERMAL WASTE-TO-ENERGY TECHNOLOGY

2.2.3. GROWING PROMINENCE OF BIOLOGICAL WTE TECHNOLOGY

2.3. PORTER’S FIVE FORCES ANALYSIS

2.3.1. BARGAINING POWER OF BUYERS

2.3.2. BARGAINING POWER OF SUPPLIERS

2.3.3. THREAT OF SUBSTITUTE

2.3.4. THREAT OF NEW ENTRANTS

2.3.5. THREAT OF COMPETITIVE RIVALRY

2.4. KEY IMPACT ANALYSIS

2.4.1. COST

2.4.2. ENVIRONMENT-FRIENDLY

2.4.3. SUBSTITUTES

2.4.4. AVAILABILITY

2.5. MARKET ATTRACTIVENESS INDEX

2.6. VENDOR SCORECARD

2.7. INDUSTRY COMPONENTS

2.7.1. WASTE GENERATION

2.7.2. WASTE COLLECTION

2.7.3. SUPPLIERS

2.7.4. MANUFACTURERS

2.7.5. DISTRIBUTORS & RETAILERS

2.7.6. END-USERS

2.8. MARKET DRIVERS

2.8.1. RISING ENERGY DEMAND & NEED FOR ENERGY SECURITY

2.8.2. SUBSTANTIAL INVESTMENTS IN NEW WTE PROJECTS

2.8.3. RAPID INDUSTRIALIZATION & URBANIZATION CONTRIBUTING TO THE INCREASING MUNICIPAL WASTE

2.8.4. DECLINING NUMBER OF LANDFILL SITES

2.9. MARKET RESTRAINTS

2.9.1. HIGH SETUP COST – MAJOR DRAWBACK

2.9.2. AVAILABILITY OF ALTERNATIVE TECHNOLOGIES

2.9.3. STRICT ENVIRONMENTAL GUIDELINES

2.10.            MARKET OPPORTUNITIES

2.10.1. DEPLETING CONVENTIONAL ENERGY RESOURCES

2.10.2. EMERGING TECHNOLOGIES

2.11.            MARKET CHALLENGES

2.11.1. TECHNOLOGICAL CHALLENGES

2.11.2. OPPOSITION FROM ENVIRONMENTAL GROUPS & LOCAL COMMUNITIES

3.    NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET OUTLOOK – BY TECHNOLOGY

3.1. THERMAL

3.2. BIOLOGICAL

3.3. PHYSICAL

4.    NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET OUTLOOK – BY TYPE OF WASTE

4.1. MUNICIPAL WASTE

4.1.1. RESIDENTIAL

4.1.2. COMMERCIAL & INSTITUTIONAL

4.1.3. CONSTRUCTION & DEMOLITION

4.1.4. OTHER MUNICIPAL WASTES

4.2. PROCESS WASTE

4.3. MEDICAL WASTE

4.4. AGRICULTURE WASTE

4.5. OTHER WASTES

5.    NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET OUTLOOK – BY APPLICATION

5.1. ELECTRICITY

5.2. HEAT

5.3. COMBINED HEAT & POWER UNITS

5.4. TRANSPORT FUELS

5.5. OTHER APPLICATIONS

6.    NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET – REGIONAL OUTLOOK

6.1. UNITED STATES

6.2. CANADA

7.    COMPETITIVE LANDSCAPE

7.1. AMEC FOSTER WHEELER PLC (ACQUIRED BY WOOD GROUP)

7.2. BABCOCK & WILCOX ENTERPRISES, INC.

7.3. C&G ENVIRONMENTAL PROTECTION HOLDINGS LTD.

7.4. CHINA EVERBRIGHT INTERNATIONAL LTD.

7.5. COVANTA HOLDING CORPORATION

7.6. GREEN CONVERSION SYSTEMS, INC.

7.7. HITACHI ZOSEN CORPORATION

7.8. KEPPEL SEGHERS

7.9. MITSUBISHI HEAVY INDUSTRIES, LTD.

7.10.            PLASCO CONVERSION SYSTEMS (ACQUIRED BY RMB ADVISORY SERVICES)

7.11.            SUEZ ENVIRONNEMENT COMPANY

7.12.            VEOLIA ENVIRONNEMENT S.A.

7.13.            WASTE MANAGEMENT, INC.

7.14.            WHEELABRATOR TECHNOLOGIES, INC.

7.15.            XCEL ENERGY, INC.

7.16.            BTA INTERNATIONAL GMBH

7.17.            MARTIN GMBH

7.18.            ZE-GEN, INC.

7.19.            SAKO BRNO A.S.

7.20.            AUSTRIAN ENERGY & ENVIRONMENT GROUP

8.    RESEARCH METHODOLOGY & SCOPE

8.1. RESEARCH SCOPE & DELIVERABLES

8.2. SOURCES OF DATA

8.3. RESEARCH METHODOLOGY

List of Tables

TABLE 1: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY COUNTRY, 2019-2027 (IN $ MILLION)

TABLE 2: VENDOR SCORECARD

TABLE 3: ANTICIPATED WTE PROJECTS ACROSS WORLD

TABLE 4: PROJECTED WASTE GENERATION DATA FOR 2025, BY REGION

TABLE 5: COMPETING RENEWABLE TECHNOLOGIES

TABLE 6: CARBON EFFICIENCY OF SEVERAL BIOFUEL PRODUCTION PROCESSES

TABLE 7: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY COUNTRY, 2019-2027 (IN $ MILLION)

TABLE 8: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY TECHNOLOGY, 2019-2027 (IN $ MILLION)

TABLE 9: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY TYPE OF WASTE, 2019-2027 (IN $ MILLION)

TABLE 10: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY MUNICIPAL SOLID WASTE (MSW), 2019-2027 (IN $ MILLION)

TABLE 11: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY APPLICATION, 2019-2027 (IN $ MILLION)

List of Figures

FIGURE 1: MARKET INVESTMENT FOR INCINERATION IN ASIA-PACIFIC, EUROPE AND NORTH AMERICA

FIGURE 2: KEY BUYING IMPACT ANALYSIS

FIGURE 3: MARKET ATTRACTIVENESS INDEX

FIGURE 4: INDUSTRY COMPONENTS

FIGURE 5: WORLDWIDE GDP GROWTH RATE AND TRENDS BY ECONOMY (ACTUAL AND PROJECTED), 2010-2025 (IN %)

FIGURE 6: WORLDWIDE REGION-WISE ENERGY CONSUMPTION, 2015-2035 (MTOE = MILLION TON OF OIL EQUIVALENT)

FIGURE 7: WORLDWIDE AVAILABLE MUNICIPAL WASTE FOR WTE, 2009-2016 (MILLION TON)

FIGURE 8: WORLDWIDE RENEWABLE ELECTRICITY INSTALLED CAPACITY, BY SOURCE, 2012-2019 (GW)

FIGURE 9: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY THERMAL, 2019-2027 (IN $ MILLION)

FIGURE 10: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY BIOLOGICAL, 2019-2027 (IN $ MILLION)

FIGURE 11: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY PHYSICAL, 2019-2027 (IN $ MILLION)

FIGURE 12: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY MUNICIPAL WASTE, 2019-2027 (IN $ MILLION)

FIGURE 13: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY RESIDENTIAL, 2019-2027 (IN $ MILLION)

FIGURE 14: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY COMMERCIAL & INSTITUTIONAL, 2019-2027 (IN $ MILLION)

FIGURE 15: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY CONSTRUCTION & DEMOLITION, 2019-2027 (IN $ MILLION)

FIGURE 16: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY OTHER WASTES, 2019-2027 (IN $ MILLION)

FIGURE 17: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY PROCESS WASTE, 2019-2027 (IN $ MILLION)

FIGURE 18: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY MEDICAL WASTE, 2019-2027 (IN $ MILLION)

FIGURE 19: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY AGRICULTURE WASTE, 2019-2027 (IN $ MILLION)

FIGURE 20: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY OTHER WASTES, 2019-2027 (IN $ MILLION)

FIGURE 21: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY ELECTRICITY, 2019-2027 (IN $ MILLION)

FIGURE 22: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY HEAT, 2019-2027 (IN $ MILLION)

FIGURE 23: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY COMBINED HEAT & POWER UNITS, 2019-2027 (IN $ MILLION)

FIGURE 24: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY TRANSPORT FUELS, 2019-2027 (IN $ MILLION)

FIGURE 25: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, BY OTHER APPLICATIONS, 2019-2027 (IN $ MILLION)

FIGURE 26: NORTH AMERICA WASTE-TO-ENERGY (WTE) MARKET, REGIONAL OUTLOOK, 2018 & 2027 (IN %)

FIGURE 27: UNITED STATES WASTE-TO-ENERGY (WTE) MARKET, 2019-2027 (IN $ MILLION)

FIGURE 28: CANADA WASTE-TO-ENERGY (WTE) MARKET, 2019-2027 (IN $ MILLION)

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