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세계의 그린 수소 시장 분석 : 플랜트 생산능력, 생산, 프로세스, 가동 효율, 수급, 최종 용도 산업, 지역의 수요(2015-2032년)

Global Green Hydrogen Market Analysis: Plant Capacity, Production, Process, Operating Efficiency, Demand & Supply, End-User Industries, Regional Demand, 2015-2032

발행정보: | 리서치사: ChemAnalyst | 페이지 정보: 영문

※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

세계의 그린 수소 시장 규모는 급성장하고 있으며, 2022년에 약 2만 톤에 달하였으며, 2032년까지의 예측 기간에 CAGR에서 132%로 대폭 성장이 전망되고 있습니다. 최근 오스트레일리아의 Toyota Corporation은 알토나에 있는 Toyota Australia의 폐지된 자동차 제조 공장의 일각을 그린 수소의 신재생 에너지 센터로 개조하는, Toyota Ecopark Hydrogen Demonstration Project라는 새로운 프로젝트를 경영하기 시작했습니다. 이 프로젝트의 예산은 약 490만 달러로, 2023년 1월 경영을 시작했습니다. 이 센터는 고정용 에너지 및 운송용 에너지로 신재생 수소를 생산하는 데 사용됩니다.

그린 수소 확대의 주된 이유는 그린 암모니아의 합성입니다. 그린 암모니아는 탄소를 배출하지 않는 연료, 비료, 산업용 발전, 운송 역할을 할 수 있습니다. 시장에 기여하는 주된 이유 중 하나는 깨끗한 신재생 에너지 원으로서의 채용입니다. 그린 수소의 수요는 이산화탄소 배출을 줄일 수 있기 때문에 최근 몇 년간 크게 증가하고 있습니다. 또한 세계 수요 증가에도 대응하고 있습니다. 화석연료를 대체하는 장기적인 에너지원이기 때문에 그 이용은 증가할 것으로 예측됩니다. 정부는 이산화탄소 배출을 줄이고 제로 방출 목표를 달성하기 위해 다양한 프로그램을 시작했으며, 이는 미래에 시장을 성장시킬 것으로 예상됩니다. 전체 시장 규모는 대규모 성장을 보이며 예측 기간에 약 1억 2,500만 톤에 달할 전망입니다.

수요에서는, 아시아 태평양이 세계 시장에서 큰 점유율을 차지합니다. 아시아 태평양은 2022년 세계 시장의 약 50% 점유율을 차지했습니다. 앞으로 아시아 태평양은 에너지 수요와 신재생 에너지 모두에서 큰 발전을 보일 가능성이 높아 그린 수소의 중대한 시장이 될 수 있습니다. 그러나 유럽이 그린 수소의 2위 소비국이 되고 있습니다. 그린 수소는 풍차와 전기 자동차에 전력을 공급하기 위한 지속 가능한 주요 에너지원이며, 그린 수소의 이용을 지지하는 엄격한 정책도 있습니다.

최종 용도 산업별로는, 그린 암모니아가 주요 부문이며, 2022년의 시장 점유율은 40%였습니다. 또한 운송 연료는 녹색 수소의 또 다른 중요한 용도입니다.

이 데이터베이스는 세계의 그린 수소 시장에 대한 조사 분석을 통해 시장 규모 예측, 생산 능력 및 수요 등의 데이터를 제공합니다.

온라인 데이터를 PDF 또는 Excel로 다운로드할 수 있습니다. 데이터 내의 텍스트등의 카피&페이스트 및, 데이터의 인쇄는 가능합니다. 데이터는 분기별로 업데이트됩니다.

목차

제1장 생산 능력 : 기업별

제2장 생산 능력: 소재지별

제3장 생산 능력 : 프로세스별

제4장 공장설비의 가동 효율

제5장 생산 : 기업별

제6장 수요: 최종 용도별

제7장 수요 : 지역별

제8장 수급 갭

제9장 가격 분석과 예측

AJY 23.11.06

The global Green Hydrogen market has surged and reached roughly 20 thousand tonnes in 2022 and is expected to grow at a remarkable CAGR of 132% during the forecast period until 2032. Recently, Toyota Corporation, Australia started operating a new project named Toyota Ecopark Hydrogen Demonstration Project under which a sector of Toyota Australia's decommissioned car manufacturing plant in Altona was modified into a renewable energy center for Green Hydrogen. The project had a budget of approximately USD 4.9 million and began operating in January 2023. This center is utilized to produce renewable Hydrogen for both stationary energy and transportation energy usage.

Hydrogen is a gas utilized as an energy source that can also be employed as a raw material in the industrial sector. It is a primary element and is present naturally in nature. Traditional methods of extraction of Hydrogen are used to emit significant volumes of carbon dioxide. Green Hydrogen is synthesized by a clean method without any carbon dioxide emissions. The Water Electrolysis process, which separates water molecules into their Hydrogen and oxygen components, is used to produce green Hydrogen. Green Hydrogen is employed majorly for energy storage and power wind plants. In the future, its demand is anticipated to rise due to the reason that it is a renewable energy source. Although Energy Storage, Feedstock, and Transportation are the significant applications of Green Hydrogen, Energy Storage is the dominant application.

The leading reason for the expansion of green hydrogen is the synthesis of green ammonia. Green ammonia. Green ammonia can function as a zero-carbon emission fuel, fertilizer, industrial power generation, and transportation. One of the leading reasons contributing to the Green Hydrogen global market is its employment as a source of clean and renewable energy. The demand for green hydrogen has increased significantly in recent years due to its capacity to reduce carbon emissions. It also aids in meeting the growing demands of the world. Its use is anticipated to increase because it is a long-term energy source as a replacement for fossil fuels. The government has launched a variety of programmes to cut carbon emissions and reach the target of zero emissions, which is expected to grow the market for green hydrogen in the future years. The overall Green Hydrogen market is anticipated to experience massive growth and reach about 125000 thousand tonnes in the forecast period.

Based on demand, Asia Pacific holds the major share of the Green Hydrogen market all across the globe. Asia Pacific held a market share of roughly 50% of global Green Hydrogen in 2022. In the future, Asia Pacific will most likely experience high development in both energy demand and renewable energy, and it might be a significant market for green hydrogen. However, Europe stands as the second largest consumer of Green Hydrogen. Green Hydrogen is a sustainable and major source of energy in Europe to power windmills and electric vehicles along with stringent government policies which favor green hydrogen usage.

Based on the end-user industry, the Green Hydrogen market is segmented into various influential industries which are Green Ammonia, Transportation Fuel, Power & Heating, Refining, and Chemical Feedstock. Among these, Green Ammonia is the leading segment and held a market share of 40% in 2022. Moreover, Transportation Fuel is another impressive application of Green Hydrogen.

Significant companies for Global Green Hydrogen are Sinopec, Ningxia Baofeng Energy Group, Shell Plc, Jilin Chemical, Ohmium, Air Liquide, Acme Group, GAIL (India) Limited, Indian Oil Corporation Ltd, Toshiba Energy Systems and Solutions, SK Inc & Monolith, Hyosung Group, Linde Plc, Cleantech Group (Svevind Energy Group), N.V Nederlandse Gasunie, and others.

Years considered for this report:

Historical Period: 2015- 2022

Base Year: 2022

Estimated Year: 2023

Forecast Period: 2024-2032

The objective of the Study:

  • To assess the demand-supply scenario of Green Hydrogen, which covers the production, demand, and supply of Green Hydrogen around the globe.
  • To analyze and forecast the market size of Green Hydrogen.
  • To classify and forecast the Global Green Hydrogen market based on end-use and regional distribution.
  • To examine global competitive developments such as new capacity expansions, mergers & acquisitions, etc., of the Green Hydrogen market.

To extract data for the Global Green Hydrogen market, primary research surveys were conducted with Green Hydrogen manufacturers, suppliers, distributors, wholesalers, and Traders. While interviewing, the respondents were also inquired about their competitors. Through this technique, ChemAnalyst was able to include manufacturers that could not be identified due to the limitations of secondary research. Moreover, ChemAnalyst analyzed various segments and projected a positive outlook for the Global Green Hydrogen market over the coming years.

ChemAnalyst calculated Green Hydrogen demand around the globe by analyzing the historical data and demand forecast, which was carried out considering raw material to produce Green Hydrogen. ChemAnalyst sourced these values from industry experts and company representatives and externally validated them by analyzing the historical sales data of respective manufacturers to arrive at the overall market size. Various secondary sources, such as company websites, association reports, annual reports, etc., were also studied by ChemAnalyst.

Key Target Audience:

  • Green Hydrogen manufacturers and other stakeholders
  • Organizations, forums and alliances related to Green Hydrogen distribution
  • Government bodies such as regulating authorities and policy makers
  • Market research organizations and consulting companies

The study is useful in providing answers to several critical questions that are important for industry stakeholders such as Green Hydrogen manufacturers, customers and policy makers. The study would also help them to target the growing segments over the coming years, thereby aiding the stakeholders in taking investment decisions and facilitating their expansion.

Report Scope:

In this report, Global Green Hydrogen market has been segmented into following categories, in addition to the industry trends which have also been detailed below:

  • Market, by End-use: Green Ammonia, Transportation Fuel, Power & Heating, Refining, and Chemical Feedstock
  • Market, by Sales Channel: Direct Sale and Indirect Sale
  • Market, by Region: North America, Europe, Asia Pacific, Middle East and Africa, and South America.

Available Customizations:

With the given market data, ChemAnalyst offers customizations according to a company's specific needs.

Table of Contents

Table of Content

1. Capacity By Company

  • On our online platform, you can stay up to date with essential manufacturers and their current and future operation capacity on a practically real-time basis for Green Hydrogen.

2. Capacity By Location

  • To better understand the regional supply of Green Hydrogen by analyzing its manufacturers' location-based capacity.

3. Capacity By Process

  • To evaluate the demand of various methods and their capacities while looking for the future growth of each process.

4. Plant Operating Efficiency

  • To determine what percentage manufacturers are operating their plants or how much capacity is being currently used.

5. Production By Company

  • Study the historical annual production of Green Hydrogen by the leading players and forecast how it will grow in the coming years.

6. Demand by End- Use

  • Discover which end-user industry (Green Ammonia, Transportation Fuel, Power & Heating, Refining, and Chemical Feedstock) are creating a market and the forecast for the growth of the Green Hydrogen market.

7. Demand by Region

  • Analyzing the change in demand of Green Hydrogen in different regions, i.e., North America, Europe, Asia Pacific, Middle East and Africa, and South America, that can direct you in mapping the regional demand.

8. Demand-Supply Gap

  • Determine the supply-demand gap to gain information about the trade surplus or deficiency of Green Hydrogen.

9. Pricing Analysis & Forecast

  • Analyze historical prices since 2015 & Forecast on three months rolling period for next 12 months.
  • Years considered for this report:
  • Historical Period: 2015- 2022
  • Base Year: 2022
  • Estimated Year: 2023
  • Forecast Period: 2024-2032
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