封面
市場調查報告書
商品編碼
1159433

人工光合作用的全球市場(2022年~2028年)

Artificial Photosynthesis Market 2022-2028

出版日期: | 出版商: Orion Market Research | 英文 130 Pages | 商品交期: 2-3個工作天內

價格

全球人工光合作用的市場規模在預測期間內預計將以12%的年複合成長率成長。推動市場成長的主要因素有政府對人工光合作用研究和開發的資助和批准等。

本報告提供全球人工光合作用市場調查,提供市場概要,市場的推動因素與阻礙因素的分析,市場機會,各市場區隔,各地區的市場分析,主要企業的簡介等系統性資訊。

目錄

第1章 報告概要

第2章 市場概要與洞察

  • 調查範圍
  • 分析師的洞察和目前市場趨勢

第3章 競爭情形

  • 主要企業分析
    • 概要
    • 財務分析
    • SWOT分析
    • 最近的趨勢
  • 主要策略分析
  • COVID-19對主要企業帶來的影響

第4章 市場區隔

  • 各技術
    • 光電氣催化劑
    • 共電解
    • 其他(奈米技術,混合流程)
  • 各用途
    • 化學品

第5章 地區分析

  • 北美
    • 美國
    • 加拿大
  • 歐洲
    • 英國
    • 德國
    • 義大利
    • 西班牙
    • 法國
    • 其他的歐洲
  • 亞太地區
    • 中國
    • 印度
    • 日本
    • 韓國
    • 其他的亞太地區
  • 全球其他地區

第6章 企業簡介

  • Berkeley Lab
  • BIOECON
  • Carbon Solutions, Inc.
  • California Institute of Technology
  • ENGIE SA
  • Evonik Industries AG
  • Fujitsu Ltd.
  • Future Carbon
  • Mitsubishi Chemical Holdings Corp
  • Panasonic Holdings Corp
  • Siemens AG
  • SunHydrogen, Inc.
  • Toshiba Corp.
  • Toyota Central R&D Labs., Inc.
  • Twelve, formerly known as Opus 12
Product Code: OMR2026604

Global Artificial Photosynthesis Market Size, Share & Trends Analysis Report By Technology (Photo-Electro Catalysis, Co-Electrolysis, and Others (Nanotechnology, Hybrid Process)), and by Application (Hydrogen Chemicals, And Hydrocarbons) Forecast Period (2022-2030)

The global artificial photosynthesis market is anticipated to grow at a substantial CAGR of 12% during the forecast period. Several government funding and approval for the research and development of artificial photosynthesis is important to factor that is anticipated to drive the market growth. For instance, In July 2020, the US, Department of Energy (DOE), has announced $100 million in funding for two new awards focused on advancing artificial photosynthesis. The Department is investing in the Fuels from Sunlight Energy Innovation Hub, and has developed efforts LiSA led by the California Institute of Technology and CHASE led by the University of North Carolina at Chapel Hill.

Artificial photosynthesis is segmented on the basis of technology and application. Based on Technology, the market is segmented into photo-electro catalysis, co-electrolysis, and others (nanotechnology, hybrid process). On the basis of application, the market is sub-divided into hydrogen chemicals and hydrocarbons. Among technology segments, the photo-electro catalysis segment is dominating the market due to as this process is majorly being used in artificial photosynthesis for water oxidation and constructs efficient artificial photosynthesis systems.

Geographically market is segmented into North America, Europe, Asia Pacific, and the Rest of the World. North America is dominating in the artificial photosynthesis market across the globe attributed to the regions having the presence of supportive policies and incentives in the US for sustainable development projects across the regions. Moreover, the rising demand for uninterrupted power supply in the region is also propelling market growth. Such policies and initiatives have encouraged the adoption of clean fuels, that includes hydrogen, for high energy requirements owing to well-developed infrastructure. For instance, the Hydrogen and Fuel Cell Technical Advisory Committee (HTAC) was established under Section 807 of the Energy Policy Act of 2005 in the US, to provide technical and programmatic total guidance to the Energy Secretary on the Department of Energy's (DOE) hydrogen research projects being held. As artificial photosynthesis is an R&D technology and it is best suited for these forms of government incentives and policies.

The competitive landscape includes key strategies of leading players, recent developments, and key company analysis. The major players that contribute to the growth of the market include BERKELEY LAB, Carbon Solutions Inc., Evonik Industries AG, Fujitsu Laboratories Ltd., Panasonic Corp., Siemens AG, Toshiba Corp., Toyota Central R&D Labs, Inc., and many others. The market players are considerably contributing to the market growth by the adoption of various strategies including mergers and acquisitions, partnerships, collaborations, funding, and new product launches, to stay competitive in the market. For instance, in October 2021, Researchers from Nanyang Technological University developed a new technique to boost artificial photosynthesis and it enables greater energy generation. Moreover, it is more renewable and sustainable and facilities production of more energy as well as lower waste.

Research Methodology

The market study of the global artificial photosynthesis market is incorporated by extensive primary and secondary research conducted by the research team at OMR. Secondary research has been conducted to refine the available data to break down the market into various segments, and derive the total market size, market forecast, and growth rate. Different approaches have been worked on to derive the market value and market growth rate. Our team collects facts and data related to the market from different geography to provide a better regional outlook. In the report, the country-level analysis is provided by analyzing various regional players, regional tax laws and policies, consumer behavior, and macro-economic factors. Numbers extracted from secondary research have been authenticated by conducting proper primary research. It includes tracking down key people from the industry and interviewing them to validate the data. This enables our analyst to derive the closest possible figures without any major deviations in the actual number. Our analysts try to contact as many executives, managers, key opinion leaders, and industry experts. Primary research brings authenticity to our reports.

Secondary Sources Include:

  • Financial reports of companies involved in the market.
  • Whitepapers, research papers, and news blogs.
  • Company websites and their product catalog.

The report provides an in-depth analysis of the market size, and intended quality of the service preferred by consumers. The report will serve as a source for a 360-degree analysis of the market thoroughly integrating different models.

Market Segmentation

1. Global Artificial Photosynthesis Market Research And Analysis By Technology

2. Global Artificial Photosynthesis Market Research And Analysis By Application

The Report Covers:

  • Comprehensive Research Methodology of the global artificial photosynthesis market.
  • This report also includes a detailed and extensive market overview with key analyst insights.
  • An exhaustive analysis of macro and micro factors influencing the market guided by key recommendations.
  • Analysis of regional regulations and other government policies impacting the global artificial photosynthesis market.
  • Insights about market determinants that are stimulating the global artificial photosynthesis market.
  • Detailed and extensive market segments with the regional distribution of forecasted revenues.
  • Extensive profiles and recent developments of market players.

Table of Contents

1. Report Summary

  • Current Product Analysis and Growth Potential Outlook
  • Impact of COVID-19 on the Global Artificial Photosynthesis Market
  • Recovery Scenario of Global Artificial Photosynthesis Market
  • 1.1. Research Methods and Tools
  • 1.2. Market Breakdown
    • 1.2.1. By Segments
    • 1.2.2. BY Region

2. Market Overview and Insights

  • 2.1. Scope of the Report
  • 2.2. Analyst Insight & Current Market Trends
    • 2.2.1. Key Findings
    • 2.2.2. Recommendations
    • 2.2.3. Conclusion

3. Competitive Landscape

  • 3.1. Key Company Analysis
    • 3.1.1. Overview
    • 3.1.2. Financial Analysis
    • 3.1.3. SWOT Analysis
    • 3.1.4. Recent Developments
  • 3.2. Key Strategy Analysis
  • 3.3. Impact of Covid-19 on Key Players

4. Market Segmentation

  • 4.1. Global Artificial Photosynthesis Market by Technology
    • 4.1.1. Photo-Electro Catalysis
    • 4.1.2. Co-Electrolysis
    • 4.1.3. Others (Nanotechnology, Hybrid Process)
  • 4.2. Global Artificial Photosynthesis Market by Application
    • 4.2.1. Hydrogen
    • 4.2.2. Chemicals
    • 4.2.3. Hydrocarbons

5. Regional Analysis

  • 5.1. North America
    • 5.1.1. US
    • 5.1.2. Canada
  • 5.2. Europe
    • 5.2.1. UK
    • 5.2.2. Germany
    • 5.2.3. Italy
    • 5.2.4. Spain
    • 5.2.5. France
    • 5.2.6. Rest of Europe
  • 5.3. Asia-Pacific
    • 5.3.1. China
    • 5.3.2. India
    • 5.3.3. Japan
    • 5.3.4. South Korea
    • 5.3.5. Rest of Asia-Pacific
  • 5.4. Rest of the World

6. Company Profiles

  • 6.1. Berkeley Lab
  • 6.2. BIOECON
  • 6.3. Carbon Solutions, Inc.
  • 6.4. California Institute of Technology
  • 6.5. ENGIE SA
  • 6.6. Evonik Industries AG
  • 6.7. Fujitsu Ltd.
  • 6.8. Future Carbon
  • 6.9. Mitsubishi Chemical Holdings Corp
  • 6.10. Panasonic Holdings Corp
  • 6.11. Siemens AG
  • 6.12. SunHydrogen, Inc.
  • 6.13. Toshiba Corp.
  • 6.14. Toyota Central R&D Labs., Inc.
  • 6.15. Twelve, formerly known as Opus 12

LIST OF TABLES

  • 1. GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY TECHNOLOGY, 2021-2030 ($ MILLION)
  • 2. GLOBAL PHOTO-ELECTRO CATALYSIS ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 3. GLOBAL CO-ELECTROLYSIS BASED ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 4. GLOBAL OTHERS BASED ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 5. GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY APPLICATION, 2021-2030 ($ MILLION)
  • 6. GLOBAL ARTIFICIAL HYDROGEN PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 7. GLOBAL ARTIFICIAL CHEMICALS PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 8. GLOBAL ARTIFICIAL HYDROCARBONS PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY REGION, 2021-2030 ($ MILLION)
  • 9. NORTH AMERICAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY COUNTRY, 2021-2030 ($ MILLION)
  • 10. NORTH AMERICAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY TECHNOLOGYS, 2021-2030 ($ MILLION)
  • 11. NORTH AMERICAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY APPLICATION, 2021-2030 ($ MILLION)
  • 12. EUROPEAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY COUNTRY, 2021-2030 ($ MILLION)
  • 13. EUROPEAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY TECHNOLOGYS, 2021-2030 ($ MILLION)
  • 14. EUROPEAN ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY APPLICATION, 2021-2030 ($ MILLION)
  • 15. ASIA-PACIFIC ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY COUNTRY, 2021-2030 ($ MILLION)
  • 16. ASIA-PACIFIC ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY TECHNOLOGYS, 2021-2030 ($ MILLION)
  • 17. ASIA-PACIFIC ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY APPLICATION, 2021-2030 ($ MILLION)
  • 18. REST OF THE WORLD ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY COUNTRY, 2021-2030 ($ MILLION)
  • 19. REST OF THE WORLD ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY TECHNOLOGYS, 2021-2030 ($ MILLION)
  • 20. REST OF THE WORLD ARTIFICIAL PHOTOSYNTHESIS MARKET RESEARCH AND ANALYSIS BY APPLICATION, 2021-2030 ($ MILLION)

LIST OF FIGURES

  • 1. IMPACT OF COVID-19 ON GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET, 2021-2030 ($ MILLION)
  • 2. IMPACT OF COVID-19 ON GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET BY SEGMENT, 2021-2030 ($ MILLION)
  • 3. RECOVERY OF GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET, 2021-2030 (%)
  • 4. GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY TECHNOLOGYS, 2021 VS 2030 (%)

5. GLOBAL PHOTO-ELECTRO CATALYSIS BASED ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030

  • 6. GLOBAL CO-ELECTROLYSIS BASED ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 7. GLOBAL OTHER TECHNOLOGIES BASED ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 8. GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY APPLICATION, 2021 VS 2030 (%)
  • 9. GLOBAL ARTIFICIAL HYDROGEN PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 10. GLOBAL ARTIFICIAL CHEMICALS PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 11. GLOBAL ARTIFICIAL HYDROCARBONSPHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 12. GLOBAL ARTIFICIAL PHOTOSYNTHESIS MARKET SHARE BY GEOGRAPHY, 2021 VS 2030 (%)
  • 13. US ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 14. CANADA ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 15. UK ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 16. FRANCE ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 17. GERMANY ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 18. ITALY ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 19. SPAIN ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 20. REST OF EUROPE ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 21. INDIA ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 22. CHINA ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 23. JAPAN ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 24. SOUTH KOREA ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 25. REST OF ASIA-PACIFIC ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)
  • 26. REST OF THE WORLD ARTIFICIAL PHOTOSYNTHESIS MARKET SIZE, 2021-2030 ($ MILLION)