North America nuclear waste management market is expected to grow by 1.9% annually in the forecast period and reach $13.56 billion by 2027 driven by the rising demand for clean energy and an increasing number of nuclear-decommissioning projects.
Highlighted with 24 tables and 37 figures, this 89-page report “North America Nuclear Waste Management Market 2020-2027 by Waste Type (LLW, ILW, HLW), Source (Nuclear Fuel Cycle, Research, Military), Reactor Type (PWR, BWR, PHWR, HTGCR, LMFBR), and Country: Trend Outlook and Growth Opportunity” is based on a comprehensive research of the entire North America nuclear waste management market and all its sub-segments through extensively detailed classifications. Profound analysis and assessment are generated from premium primary and secondary information sources with inputs derived from industry professionals across the value chain. The report is based on studies on 2017-2019 and provides estimate/forecast from 2020 till 2027 with 2019 as the base year. (Please note: The report will be updated before delivery so that the latest historical year is the base year and the forecast covers at least 5 years over the base year.)
In-depth qualitative analyses include identification and investigation of the following aspects:
• Market Structure
• Growth Drivers
• Restraints and Challenges
• Emerging Product Trends & Market Opportunities
• Porter’s Fiver Forces
The trend and outlook of North America market is forecast in optimistic, balanced, and conservative view by taking into account of COVID-19. The balanced (most likely) projection is used to quantify North America nuclear waste management market in every aspect of the classification from perspectives of by Waste Type, Source, Reactor Type, and Country.
Based on Waste Type, the North America market is segmented into the following sub-markets with annual revenue for 2017-2027 included in each section.
• Low-level Waste (LLW)
• Intermediate-level Waste (ILW)
• High-level Waste (HLW)
Based on Source, the North America market is segmented into the following sub-markets with annual revenue for 2017-2027 included in each section.
• Nuclear Fuel Cycle
o Radioactive Mining, Milling & Extracting Activities
o Nuclear Power Reactors
• Research, Medical & Industrial Source
• Military & Defense Programs
• Other Sources
Based on Reactor Type, the North America market is segmented into the following sub-markets with annual revenue for 2017-2027 included in each section.
• Pressurized Water Reactor (PWR)
• Boiling Water Reactor (BWR)
• Pressurized Heavy Water Reactor (PHWR)
• High-temperature Gas Cooled Reactor (HTGCR)
• Liquid Metal Fast Breeder Reactor (LMFBR)
Geographically, the following national/local markets are fully investigated:
• U.S.
• Canada
• Mexico
For each key country, detailed analysis and data for annual revenue are available for 2017-2027. The breakdown of key national markets by Waste Type, Source, and Reactor Type over the forecast years are also included.
The report also covers current competitive scenario and the predicted trend; and profiles key vendors including market leaders and important emerging players.
Key Players (this may not be a complete list and extra companies can be added upon request):
AREVA S.A.
Bechtel Group Inc.
Chase Environmental Group
Enercon Services Inc.
EnergySolutions
Fluor Corporation
GNS Gesellschaft für Nuklear-Service mbH
Magnox Technologies Pvt Ltd
NUKEM Technologies
Perma-Fix Environmental Services
Studsvik AB
Veolia Environment SA
Westinghouse Electric Company LLC (Toshiba)
(Please note: The report will be updated before delivery so that the latest historical year is the base year and the forecast covers at least 5 years over the base year.)
1 Introduction 5
1.1 Industry Definition and Research Scope 5
1.1.1 Industry Definition 5
1.1.2 Research Scope 6
1.2 Research Methodology 9
1.2.1 Overview of Market Research Methodology 9
1.2.2 Market Assumption 10
1.2.3 Secondary Data 10
1.2.4 Primary Data 10
1.2.5 Data Filtration and Model Design 11
1.2.6 Market Size/Share Estimation 12
1.2.7 Research Limitations 13
1.3 Executive Summary 14
2 Market Overview and Dynamics 16
2.1 Market Size and Forecast 16
2.1.1 Impact of COVID-19 on World Economy 21
2.1.2 Impact of COVID-19 on the Market 23
2.2 Major Growth Drivers 25
2.3 Market Restraints and Challenges 30
2.4 Emerging Opportunities and Market Trends 33
2.5 Porter’s Fiver Forces Analysis 37
3 Segmentation of North America Market by Waste Type 41
3.1 Market Overview by Waste Type 41
3.2 Low-level Waste (LLW) 43
3.3 Intermediate-level Waste (ILW) 44
3.4 High-level Waste (HLW) 45
4 Segmentation of North America Market by Source 46
4.1 Market Overview by Source 46
4.2 Nuclear Fuel Cycle 48
4.3 Research, Medical & Industrial Source 49
4.4 Military & Defense Programs 50
4.5 Other Sources 51
5 Segmentation of North America Market by Reactor Type 52
5.1 Market Overview by Reactor Type 52
5.2 Pressurized Water Reactor (PWR) 55
5.3 Boiling Water Reactor (BWR) 56
5.4 Pressurized Heavy Water Reactor (PHWR) 57
5.5 High-temperature Gas Cooled Reactor (HTGCR) 58
5.6 Liquid Metal Fast Breeder Reactor (LMFBR) 59
6 North America Market 2020-2027 by Country 60
6.1 Overview of North America Market 60
6.2 U.S. 63
6.3 Canada 67
6.4 Mexico 69
7 Competitive Landscape 71
7.1 Overview of Key Vendors 71
7.2 New Product Launch, Partnership, Investment, and M&A 74
7.3 Company Profiles 75
AREVA S.A. 75
Bechtel Group Inc. 77
Chase Environmental Group 78
Enercon Services Inc. 79
EnergySolutions 80
Fluor Corporation 81
GNS Gesellschaft für Nuklear-Service mbH 82
Magnox Technologies Pvt Ltd 83
NUKEM Technologies 84
Perma-Fix Environmental Services 85
Studsvik AB 86
Veolia Environment SA 87
Westinghouse Electric Company LLC (Toshiba) 88
Related Reports and Products 89
Methodology/Research Approach
This research study involved the extensive usage of both primary and secondary data sources. The research process involved the study of various factors affecting the industry, including the government policy, market environment, competitive landscape, historical data, present trends in the market, technological innovation, upcoming technologies and the technical progress in related industry, and market risks, opportunities, market barriers and challenges. The following illustrative figure shows the market research methodology applied in this report.Research Programs/Design
Historical Data (2015-2019) |
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Market Forecast (2021-2026) |
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Market Size Estimation
Top-down and bottom-up approaches are used to validate the global Voluntary Carbon Offset market size market and estimate the market size for Company, regions segments, product segments and Application (end users).
The market estimations in this report are based on the marketed sale price of Voluntary Carbon Offset (excluding any discounts provided by the player, distributor, wholesaler or traders). The percentage splits, market share, and breakdowns of the product segments are derived on the basis of weights assigned to each of the segments on the basis of their utilization rate and average sale price. The regional splits of the overall Voluntary Carbon Offset market and its sub-segments are based on the percentage adoption or utilization of the given product in the respective region or country.
Major Company in the market is identified through secondary research and their market revenues determined through primary and secondary research. Secondary research included the research of the annual and financial reports of the top Company; whereas, primary research included extensive interviews of key opinion leaders and industry experts such as experienced front-line staff, directors, CEOs and marketing executives. The percentage splits, market share, Growth Rate and breakdowns of the product markets are determined through using secondary sources and verified through the primary sources.
All possible factors that influence the markets included in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data. The market size for top-level markets and sub-segments is normalized, and the effect of inflation, economic downturns, and regulatory & policy changes or other factors are not accounted for in the market forecast. This data is combined and added with detailed inputs and analysis from Market Intellix and presented in this report
The following figure shows an illustrative representation of the overall market size estimation process used for this study.
Market Breakdown and Data Triangulation
After complete market engineering with calculations for market statistics; market size estimations; market forecasting; market breakdown; and data triangulation, extensive primary research was conducted to gather information and verify and validate the critical numbers arrived at. In the complete market engineering process, both top-down and bottom-up approaches were extensively used, along with several data triangulation methods, to perform market estimation and market forecasting for the overall market segments and sub-segments listed in this report. Extensive qualitative and further quantitative analysis is also done from all the numbers arrived at in the complete market engineering process to list key information throughout the report.
Data Source
Secondary Sources
Secondary sources include such as press releases, annual reports, non-profit organizations, industry associations, governmental agencies and customs data, etc. This research study involves the usage of widespread secondary sources, directories, databases such as Bloomberg Business, Wind Info, Hoovers, Factiva (Dow Jones & Company), and TRADING ECONOMICS, and News Network, statista, Federal Reserve Economic Data, annual reports, BIS Statistics, ICIS; company house documents; CAS(American Chemical Society); investor presentations; and SEC filings of companies. Secondary research was used to identify and collect information useful for the extensive, technical, market-oriented, and Hospitals study of the Voluntary Carbon Offset market. It was also used to obtain important information about the top companies, market classification and segmentation according to industry trends to the bottom-most level, and key developments related to market and technology perspectives.
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Qualitative Analysis |
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Primary Sources
In the primary research process, various sources from both the supply and demand sides were interviewed to obtain qualitative and quantitative information for this report. The primary sources from the supply side include product Company (and their competitors), opinion leaders, industry experts, research institutions, distributors, dealer and traders, as well as the raw materials suppliers and producers, etc.
The primary sources from the demand side include industry experts such as business leaders, marketing and sales directors, technology and innovation directors, supply chain executive, end use (product buyers), and related key executives from various key companies and organizations operating in the global market.
Primary research was conducted to identify segmentation Type, product price range, product Application, key Company, raw materials supply and the downstream demand, industry status and outlook, and key market dynamics such as risks, influence factors, opportunities, market barriers, industry trends, and key player strategies.
Key Executives Interviewed
Key Data Information from Primary Sources
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