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1891351

세계의 W2H(Waste-to-Hydrogen) 시장 : 용도, 기술, 폐기물 유형, 국가별 분석과 예측(2025-2035년)

Waste-to-Hydrogen Market - A Global and Regional Analysis: Focus on Application, Technology, Waste Type, and Country-Level Analysis - Analysis and Forecast, 2025-2035

발행일: | 리서치사: BIS Research | 페이지 정보: 영문 | 배송안내 : 1-5일 (영업일 기준)

    
    
    




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W2H(Waste-to-Hydrogen) 시장은 일반 폐기물, 바이오매스, 산업 잔사를 청정 수소 연료로 변환하는 혁신적 기술로 구성되며, 세계의 저탄소 에너지로의 이동을 지원하고 있습니다.

이 시장은 지속가능한 폐기물 관리의 필요성 증가와 온실가스 감축을 위한 대체 에너지원에 대한 수요 증가에 힘입어 성장하고 있습니다. 가스화, 플라즈마 변환, 열화학 처리와 같은 첨단 공정은 효율적이고 비용 효율적인 수소 생산을 실현하는 데 중요한 역할을 합니다. 시장은 경쟁이 치열하며, 각 업체들은 산업 및 도시용 맞춤형 모듈식 시스템, 확장 가능한 플랜트, 통합형 폐기물에서 수소로 가는 솔루션을 도입하고 있습니다. 에너지 안보, 순환경제 실천, 정부 주도의 수소 구상에 대한 관심이 높아지면서 수소 도입이 더욱 가속화되고 있습니다. 탄소 포집 기술, AI를 활용한 공정 최적화, 분산형 플랜트 설계 등의 혁신은 환경 문제와 운영상의 문제를 모두 해결하고 있습니다. 그 결과, 시장은 지속가능한 폐기물 감축과 수소 기반 탈탄소화라는 두 가지 목표를 지원하면서 청정 에너지 공급의 미래를 형성하기 위해 빠르게 진화하고 있습니다.

주요 시장 통계
예측 기간 2025-2035년
2025년 평가 5,090만 달러
2035년 예측 8억 2,540만 달러
CAGR 32.12%

용도별로는 화학제품 제조 부문이 시장을 주도하고 있습니다.

용도별로는 화학제품 제조 부문이 주도적인 역할을 하고 있습니다. 화학제품 제조 부문은 2024년 1,280만 달러 규모이며, 2035년까지 2억 7,540만 달러에 달할 것으로 예측됩니다. 이는 32.72%의 견고한 CAGR을 나타냅니다. 이 부문의 견고한 성장은 수소가 다양한 화학 제조 공정에서 중요한 역할을 하고 있으며, 화학 산업의 지속가능성과 효율성을 보장하기 위해 수소의 생산이 필수적이기 때문입니다. 또한 산업용 원료로서 청정 수소에 대한 수요 증가, 첨단 W2H(Waste-to-Hydrogen) 기술에 대한 투자, 그린 수소 생산에 대한 정부 인센티브가 결합되어 시장 확대를 더욱 가속화하고 있습니다. 이러한 요인들이 복합적으로 작용하여 예측 기간 중 화학제품 제조가 시장을 지배할 것으로 예상되는 이유를 지원합니다.

세계의 W2H(Waste-to-Hydrogen)(Waste Derived Hydrogen) 시장을 조사했으며, 주요 동향, 시장 영향요인의 분석, 법규제 환경, 파이프라인의 분석, 시장 규모 추이·예측, 각종 구분·지역/주요 국가별 상세 분석, 경쟁 구도, 주요 기업의 개요 등을 정리하여 전해드립니다.

목차

개요

범위와 정의

제1장 시장 : 업계 전망

  • 동향 : 현황과 향후에 대한 영향 평가
    • 가스화 및 열분해 기술의 진보
    • 산업의 탈탄소화에 대한 초점
  • 공급망의 개요
    • 밸류체인 분석
    • 세계의 W2H(Waste-to-Hydrogen) 가격 예측
  • 규제 상황
  • 이해관계자 분석
    • 사용 사례
    • 최종사용자와 구입 기준
  • 주요 세계 이벤트의 영향 분석
  • 시장 역학
    • 시장 성장 촉진요인
    • 시장이 해결해야 할 과제
    • 시장 기회

제2장 용도

  • 용도 : 요약
  • W2H(Waste-to-Hydrogen) 시장(용도별)
    • 화학제품 제조
    • 전력·에너지 저장
    • 운송·모빌리티
    • 정제
    • 기타

제3장 제품

  • 제품 요약
  • W2H(Waste-to-Hydrogen) 시장(기술별)
    • 혐기성 소화
    • 가스화
    • 열분해
    • 기타
  • W2H(Waste-to-Hydrogen) 시장(폐기물 유형별)
    • 바이오매스
    • 산업 폐기물
    • 도시 고형 폐기물(MSW)
    • 폐수 처리 잔사
    • 기타

제4장 지역

  • 지역 요약
  • 북미
  • 유럽
  • 아시아태평양
  • 기타 지역
    • 지역 개요
    • 시장 성장 원동력
    • 시장이 해결해야 할 과제
    • 용도
    • 제품
    • 기타 지역(지역별)

제5장 시장 : 경쟁 벤치마킹과 기업 개요

  • 다음 프론티어
  • 지역적 평가
    • BEEAH Group
    • Boson Energy SA
    • Chevron Corporation
    • Chinook Hydrogen
    • Mote, Inc.
    • H2-Enterprises Group Inc.
    • H2E Power
    • Powerhouse Energy Group plc
    • Raven SR, Inc.
    • SGH2 Energy Global Corp.
    • SUEZ SA
    • Clean Energy Enterprises, Inc.
    • 기타 주요 기업

제6장 조사 방법

KSA

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Introduction of Waste-to-Hydrogen Market

The waste-to-hydrogen market comprises innovative technologies that convert municipal solid waste, biomass, and industrial residues into clean hydrogen fuel, supporting the global transition toward low-carbon energy. This market has been driven by the increasing need for sustainable waste management and the rising demand for alternative energy sources to reduce greenhouse gas emissions. Advanced processes such as gasification, plasma conversion, and thermochemical treatment play a vital role in enabling efficient and cost-effective hydrogen production. The market is highly competitive, with companies introducing modular systems, scalable plants, and integrated waste-to-hydrogen solutions tailored for industrial and urban applications. Growing emphasis on energy security, circular economy practices, and government-backed hydrogen initiatives further accelerates adoption. Innovations in carbon capture, artificial intelligence-based process optimization, and decentralized plant designs are addressing both environmental concerns and operational challenges. As a result, the market continues to evolve rapidly, shaping the future of clean energy supply while supporting the dual goals of sustainable waste reduction and hydrogen-based decarbonization.

KEY MARKET STATISTICS
Forecast Period2025 - 2035
2025 Evaluation$50.9 Million
2035 Forecast$825.4 Million
CAGR32.12%

Market Introduction

The waste-to-hydrogen market plays a crucial role in transforming waste management practices into clean energy solutions that support global decarbonization goals. With the growing demand for sustainable fuels and the urgent need to reduce landfill use, the market has been experiencing steady growth. Advanced technologies such as gasification, plasma conversion, and thermochemical treatment are increasingly adopted for efficient and reliable hydrogen production from waste streams. These innovations help optimize energy recovery, lower carbon emissions, and improve the economics of waste-to-hydrogen projects, driving market expansion.

The market also benefits from rising government investments in clean hydrogen strategies and the transition toward circular economy models. As a result, utilities, technology developers, and energy companies are prioritizing the integration of solutions to strengthen energy security and reduce environmental impact. With continuous innovation and supportive policies, the waste-to-hydrogen market is expected to grow rapidly as a cornerstone of the clean energy transition.

Industrial Impact

The waste-to-hydrogen market has been witnessing steady growth driven by the rising demand for sustainable energy, green hydrogen, and efficient waste management solutions. Technologies are essential for addressing both environmental concerns and energy needs by converting municipal solid waste, biomass, and industrial residues into clean hydrogen fuel. The market is evolving rapidly with the integration of advanced processes such as gasification, plasma conversion, and thermochemical treatment. These innovations enable more efficient, scalable, and cost-effective hydrogen production compared to conventional methods of waste disposal and energy generation. Furthermore, increasing investments in renewable energy projects and circular economy initiatives have been fuelling the adoption of waste-to-hydrogen solutions worldwide. Industries are prioritizing low-carbon strategies, including the use of hydrogen fuel cells, to reduce emissions, enhance energy security, and meet global decarbonization targets. As governments and corporations focus on sustainable growth, the market is expected to play a significant role in reshaping the energy and waste management sectors in the coming years.

Market Segmentation:

Segmentation 1: By Application

  • Chemical Production
  • Power and Energy Storage
  • Transportation/Mobility
  • Refining Industry
  • Others

Chemical Production to Dominate the Waste-to-Hydrogen Market (by Application)

The market, by application, has been predominantly driven by chemical production. The chemical production segment was valued at $12.8 million in 2024 and is projected to reach $275.4 million by 2035, exhibiting a robust CAGR of 32.72%. This segment's strong growth is attributed to the critical role that hydrogen plays in various chemical manufacturing processes, making its production essential for ensuring the sustainability and efficiency of the chemical industry. Moreover, the increasing demand for clean hydrogen as an industrial feedstock, coupled with investments in advanced waste-to-hydrogen technologies and government incentives for green hydrogen production, further accelerates market expansion. These factors combined underline why chemical production is expected to dominate the market over the forecast period.

Segmentation 2: By Technology

  • Anaerobic Digestion
  • Gasification
  • Pyrolysis
  • Others

Segmentation 3: By Waste Type

  • Biomass
  • Industrial Waste
  • Municipal Solid Waste (MSW)
  • Wastewater Treatment Residues
  • Others

Segmentation 4: By Region

  • North America
  • Europe
  • Asia-Pacific
  • Rest-of-the-World

Recent Developments in the Waste-to-Hydrogen Market

  • On June 11, 2024, the U.S. Department of Energy (DOE) allocated $9.3 million to six projects aimed at advancing the waste-to-hydrogen market. These projects will focus on converting diverse waste feedstocks into clean hydrogen, supporting decarbonization goals while reducing landfill dependency. By integrating carbon capture with hydrogen production, the initiatives are expected to enhance performance, create local economic opportunities, and strengthen the growth of the waste-to-hydrogen market.
  • On October 7, 2025, Air Liquide announced a nearly $50 million investment to strengthen its U.S. Gulf Coast hydrogen network, securing new long-term supply agreements with major refiners. By upgrading pipelines, compression, and distribution systems, the company is expanding capacity with minimal new development. This move highlights growing opportunities in the waste-to-hydrogen market, as enhanced infrastructure ensures a reliable, flexible, and sustainable hydrogen supply for industrial partners.
  • On December 10, 2024, German researchers introduced a new biotechnological process to convert wood waste into biohydrogen, supporting the growth of the waste-to-hydrogen market. Developed by the Fraunhofer Institute for Interfacial Engineering, the Institute for Manufacturing Engineering and Automation, and the University of Stuttgart, the method uses bacteria to extract hydrogen from wood-derived sugars. Backed by a $12.7 million investment from the German Federal Ministry of Education and Research, the project is expected to boost green hydrogen production in the Black Forest region.
  • On June 25, 2025, Germany's new government announced significant budget cuts impacting the hydrogen sector, including the waste-to-hydrogen market. The revised plan allocates $1.46 billion for 2026-2032, down from the previous $4.3 billion, while maintaining $571.8 million in 2025 for IPCEI projects linked to renewable hydrogen and infrastructure. Although the national hydrogen strategy aims for 10GW of electrolyzer capacity by 2030, delays in launching key programs raise concerns, with projections suggesting Germany may achieve less than half the target.

How can this report add value to an organization?

Product/Innovation Strategy: The product segment helps the reader understand the different types of services available globally. Moreover, the study provides the reader with a detailed understanding of the waste-to-hydrogen market by products based on application, technology, and waste type.

Growth/Marketing Strategy: The market has witnessed major development by key players operating in the market, such as business expansions, partnerships, collaborations, and joint ventures. The favored strategy for the companies has been synergistic activities to strengthen their position in the waste-to-hydrogen market.

Competitive Strategy: Key players in the waste-to-hydrogen market have been analyzed and profiled in the study of products. Moreover, a detailed competitive benchmarking of the players operating in the market has been done to help the reader understand how players stack against each other, presenting a clear market landscape. Additionally, comprehensive competitive strategies such as partnerships, agreements, and collaborations will aid the reader in understanding the untapped revenue pockets in the market.

Methodology: The research methodology design adopted for this specific study includes a mix of data collected from primary and secondary data sources. Both primary resources (key players, market leaders, and in-house experts) and secondary research (a host of paid and unpaid databases), along with analytical tools, have been employed to build the predictive and forecast models.

Data and validation have been taken into consideration from both primary and secondary sources.

Key Considerations and Assumptions in Market Engineering and Validation

  • Detailed secondary research has been done to ensure maximum coverage of manufacturers/suppliers operating in a country.
  • To a certain extent, exact revenue information has been extracted for each company from secondary sources and databases. Revenues specific to product/service/technology were then estimated based on fact-based proxy indicators as well as primary inputs.
  • The average selling price (ASP) has been calculated using the weighted average method based on the classification.
  • The currency conversion rate has been taken from the historical exchange rate of Oanda and/or other relevant websites.
  • Any economic downturn in the future has not been taken into consideration for the market estimation and forecast.
  • The base currency considered for the market analysis is US$. Considering the average conversion rate for that particular year, currencies other than the US$ have been converted to the US$ for all statistical calculations.
  • The term "product" in this document may refer to "service" or "technology" as and where relevant.
  • The term "manufacturers/suppliers" may refer to "service providers" or "technology providers" as and where relevant.

Primary Research

The primary sources involve industry experts from the waste-to-hydrogen industry, including product providers. Respondents such as CEOs, vice presidents, marketing directors, and technology and innovation directors have been interviewed to obtain and verify both qualitative and quantitative aspects of this research study.

Secondary Research

This study involves the usage of extensive secondary research, company websites, directories, and annual reports. It also makes use of databases, such as Businessweek and others, to collect effective and useful information for a market-oriented, technical, commercial, and extensive study of the global market. In addition to the data sources, the study has been undertaken with the help of other data sources and websites.

Secondary research has been done to obtain critical information about the industry's value chain, the market's monetary chain, revenue models, the total pool of key players, and the current and potential use cases and applications.

Key Market Players and Competition Synopsis

The waste-to-hydrogen market has witnessed strong participation from established corporations and innovative technology developers. BEEAH Group has been driving integrated sustainability initiatives with a focus on large-scale projects. Boson Energy SA contributes advanced thermal conversion systems designed for urban and industrial applications. Chevron Corporation has entered the market to expand its clean energy portfolio and strengthen global hydrogen supply chains. Companies such as Chinook Hydrogen and Mote, Inc. have been developing regional projects that combine waste management with reliable hydrogen production.

Technology-driven firms like H2-Enterprises Group Inc. and H2E Power are offering scalable solutions that align with international energy transition goals. Additionally, Powerhouse Energy Group plc and Raven SR, Inc. are introducing modular plants to enhance efficiency and reduce operational costs. Leading innovators such as SGH2 Energy Global Corp. are advancing plasma-based processes to boost hydrogen yields. Established utilities like SUEZ SA and specialized firms such as Clean Energy Enterprises, Inc. are supporting integrated projects across diverse geographies. The competitive landscape of the market is intensifying, with companies investing in technology innovation, strategic collaborations, and global expansion to meet rising demand for clean hydrogen.

Some prominent names established in thw waste-to-hydrogen market are:

  • BEEAH Group
  • Boson Energy SA
  • Chevron Corporation
  • Chinook Hydrogen
  • Mote, Inc.
  • H2-Enterprises Group Inc.
  • H2E Power
  • Powerhouse Energy Group plc
  • Raven SR, Inc.
  • SGH2 Energy Global Corp.
  • SUEZ SA
  • Clean Energy Enterprises, Inc.

Table of Contents

Executive Summary

Scope and Definition

1 Market: Industry Outlook

  • 1.1 Trends: Current and Future Impact Assessment
    • 1.1.1 Advancements in Gasification and Pyrolysis Technologies
    • 1.1.2 Focus on Industrial Decarbonization
  • 1.2 Supply Chain Overview
    • 1.2.1 Value Chain Analysis
    • 1.2.2 Global Waste-to-Hydrogen Pricing Forecast, 2024-2035, $/kg
  • 1.3 Regulatory Landscape
  • 1.4 Stakeholder Analysis
    • 1.4.1 Use Case
    • 1.4.2 End User and Buying Criteria
  • 1.5 Impact Analysis for Key Global Events
  • 1.6 Market Dynamics
    • 1.6.1 Market Drivers
      • 1.6.1.1 Integration into Circular Economy Models
      • 1.6.1.2 Government Incentives and Policy Support
    • 1.6.2 Market Challenges
      • 1.6.2.1 High Capital and Operational Costs
      • 1.6.2.2 Feedstock Quality and Waste Management Challenges
    • 1.6.3 Market Opportunities
      • 1.6.3.1 Partnerships and Collaborations

2 Application

  • 2.1 Application Summary
  • 2.2 Waste-to-Hydrogen Market (by Application)
    • 2.2.1 Chemical Production
    • 2.2.2 Power and Energy Storage
    • 2.2.3 Transportation/Mobility
    • 2.2.4 Refining Industry
    • 2.2.5 Others

3 Products

  • 3.1 Product Summary
  • 3.2 Waste-to-Hydrogen Market (by Technology)
    • 3.2.1 Anaerobic Digestion
    • 3.2.2 Gasification
    • 3.2.3 Pyrolysis
    • 3.2.4 Others
  • 3.3 Waste-to-Hydrogen Market (by Waste Type)
    • 3.3.1 Biomass
    • 3.3.2 Industrial Waste
    • 3.3.3 Municipal Solid Waste (MSW)
    • 3.3.4 Wastewater Treatment Residues
    • 3.3.5 Others

4 Region

  • 4.1 Regional Summary
  • 4.2 North America
    • 4.2.1 Regional Overview
    • 4.2.2 Driving Factors for Market Growth
    • 4.2.3 Factors Challenging the Market
    • 4.2.4 Application
    • 4.2.5 Product
    • 4.2.6 North America (by Country)
      • 4.2.6.1 U.S.
        • 4.2.6.1.1 Application
        • 4.2.6.1.2 Product
      • 4.2.6.2 Canada
        • 4.2.6.2.1 Application
        • 4.2.6.2.2 Product
      • 4.2.6.3 Mexico
        • 4.2.6.3.1 Application
        • 4.2.6.3.2 Product
  • 4.3 Europe
    • 4.3.1 Regional Overview
    • 4.3.2 Driving Factors for Market Growth
    • 4.3.3 Factors Challenging the Market
    • 4.3.4 Application
    • 4.3.5 Product
    • 4.3.6 Europe (by Country)
      • 4.3.6.1 Germany
        • 4.3.6.1.1 Application
        • 4.3.6.1.2 Product
      • 4.3.6.2 France
        • 4.3.6.2.1 Application
        • 4.3.6.2.2 Product
      • 4.3.6.3 U.K.
        • 4.3.6.3.1 Application
        • 4.3.6.3.2 Product
      • 4.3.6.4 Italy
        • 4.3.6.4.1 Application
        • 4.3.6.4.2 Product
      • 4.3.6.5 Rest-of-Europe
        • 4.3.6.5.1 Application
        • 4.3.6.5.2 Product
  • 4.4 Asia-Pacific
    • 4.4.1 Regional Overview
    • 4.4.2 Driving Factors for Market Growth
    • 4.4.3 Factors Challenging the Market
    • 4.4.4 Application
    • 4.4.5 Product
    • 4.4.6 Asia-Pacific (by Country)
      • 4.4.6.1 China
        • 4.4.6.1.1 Application
        • 4.4.6.1.2 Product
      • 4.4.6.2 Japan
        • 4.4.6.2.1 Application
        • 4.4.6.2.2 Product
      • 4.4.6.3 India
        • 4.4.6.3.1 Application
        • 4.4.6.3.2 Product
      • 4.4.6.4 South Korea
        • 4.4.6.4.1 Application
        • 4.4.6.4.2 Product
      • 4.4.6.5 Rest-of-Asia-Pacific
        • 4.4.6.5.1 Application
        • 4.4.6.5.2 Product
  • 4.5 Rest-of-the-World
    • 4.5.1 Regional Overview
    • 4.5.2 Driving Factors for Market Growth
    • 4.5.3 Factors Challenging the Market
    • 4.5.4 Application
    • 4.5.5 Product
    • 4.5.6 Rest-of-the-World (by Region)
      • 4.5.6.1 Middle East and Africa
        • 4.5.6.1.1 Application
        • 4.5.6.1.2 Product
      • 4.5.6.2 South America
        • 4.5.6.2.1 Application
        • 4.5.6.2.2 Product

5 Markets - Competitive Benchmarking & Company Profiles

  • 5.1 Next Frontiers
  • 5.2 Geographic Assessment
    • 5.2.1 BEEAH Group
      • 5.2.1.1 Overview
      • 5.2.1.2 Top Products/Product Portfolio
      • 5.2.1.3 Top Competitors
      • 5.2.1.4 Target Customers
      • 5.2.1.5 Key Personnel
      • 5.2.1.6 Analyst View
      • 5.2.1.7 Market Share, 2024
    • 5.2.2 Boson Energy SA
      • 5.2.2.1 Overview
      • 5.2.2.2 Top Products/Product Portfolio
      • 5.2.2.3 Top Competitors
      • 5.2.2.4 Target Customers
      • 5.2.2.5 Key Personnel
      • 5.2.2.6 Analyst View
      • 5.2.2.7 Market Share, 2024
    • 5.2.3 Chevron Corporation
      • 5.2.3.1 Overview
      • 5.2.3.2 Company Financials
      • 5.2.3.3 Top Products/Product Portfolio
      • 5.2.3.4 Top Competitors
      • 5.2.3.5 Target Customers
      • 5.2.3.6 Key Personnel
      • 5.2.3.7 Analyst View
      • 5.2.3.8 Market Share, 2024
    • 5.2.4 Chinook Hydrogen
      • 5.2.4.1 Overview
      • 5.2.4.2 Top Products/Product Portfolio
      • 5.2.4.3 Top Competitors
      • 5.2.4.4 Target Customers
      • 5.2.4.5 Key Personnel
      • 5.2.4.6 Analyst View
      • 5.2.4.7 Market Share, 2024
    • 5.2.5 Mote, Inc.
      • 5.2.5.1 Overview
      • 5.2.5.2 Top Products/Product Portfolio
      • 5.2.5.3 Top Competitors
      • 5.2.5.4 Target Customers
      • 5.2.5.5 Key Personnel
      • 5.2.5.6 Analyst View
      • 5.2.5.7 Market Share, 2024
    • 5.2.6 H2-Enterprises Group Inc.
      • 5.2.6.1 Overview
      • 5.2.6.2 Top Products/Product Portfolio
      • 5.2.6.3 Top Competitors
      • 5.2.6.4 Target Customers
      • 5.2.6.5 Key Personnel
      • 5.2.6.6 Analyst View
      • 5.2.6.7 Market Share, 2024
    • 5.2.7 H2E Power
      • 5.2.7.1 Overview
      • 5.2.7.2 Top Products/Product Portfolio
      • 5.2.7.3 Top Competitors
      • 5.2.7.4 Target Customers
      • 5.2.7.5 Key Personnel
      • 5.2.7.6 Analyst View
      • 5.2.7.7 Market Share, 2024
    • 5.2.8 Powerhouse Energy Group plc
      • 5.2.8.1 Overview
      • 5.2.8.2 Top Products/Product Portfolio
      • 5.2.8.3 Top Competitors
      • 5.2.8.4 Target Customers
      • 5.2.8.5 Key Personnel
      • 5.2.8.6 Analyst View
      • 5.2.8.7 Market Share, 2024
    • 5.2.9 Raven SR, Inc.
      • 5.2.9.1 Overview
      • 5.2.9.2 Top Products/Product Portfolio
      • 5.2.9.3 Top Competitors
      • 5.2.9.4 Target Customers
      • 5.2.9.5 Key Personnel
      • 5.2.9.6 Analyst View
      • 5.2.9.7 Market Share, 2024
    • 5.2.10 SGH2 Energy Global Corp.
      • 5.2.10.1 Overview
      • 5.2.10.2 Top Products/Product Portfolio
      • 5.2.10.3 Top Competitors
      • 5.2.10.4 Target Customers
      • 5.2.10.5 Key Personnel
      • 5.2.10.6 Analyst View
      • 5.2.10.7 Market Share, 2024
    • 5.2.11 SUEZ SA
      • 5.2.11.1 Overview
      • 5.2.11.2 Top Products/Product Portfolio
      • 5.2.11.3 Top Competitors
      • 5.2.11.4 Target Customers
      • 5.2.11.5 Key Personnel
      • 5.2.11.6 Analyst View
      • 5.2.11.7 Market Share, 2024
    • 5.2.12 Clean Energy Enterprises, Inc.
      • 5.2.12.1 Overview
      • 5.2.12.2 Top Products/Product Portfolio
      • 5.2.12.3 Top Competitors
      • 5.2.12.4 Target Customers
      • 5.2.12.5 Key Personnel
      • 5.2.12.6 Analyst View
      • 5.2.12.7 Market Share, 2024
    • 5.2.13 Other Key Companies

6 Research Methodology

  • 6.1 Data Sources
    • 6.1.1 Primary Data Sources
    • 6.1.2 Secondary Data Sources
    • 6.1.3 Data Triangulation
  • 6.2 Market Estimation and Forecast
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