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市场调查报告书
商品编码
1461380

绿氢市场:现况分析与预测(2023-2030)

Green Hydrogen Market: Current Analysis and Forecast (2023-2030)

出版日期: | 出版商: UnivDatos Market Insights Pvt Ltd | 英文 132 Pages | 商品交期: 最快1-2个工作天内

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简介目录

近年来,全球绿氢市场一直在回应庞大的市场需求。 推动这一成长的一个因素是世界各国为加速向再生能源转型而製定的 2030 年净零排放目标。 此外,政府对绿氢生产工厂的支持政策、计画、补贴和投资正在进一步加速全球绿氢市场规模。 再生能源领域的各个主要参与者正在共同努力降低电解质的价格,这最终将降低绿氢生产的总成本。

根据所使用的电解槽技术,绿氢市场分为三个部分:质子交换膜、碱性电解槽和其他。 其中,碱性电解槽市场占有率最高,是最常见、最成熟的绿色氢气生产技术。 此外,碱性电解槽具有成本效益且使用寿命长。

依来源,绿氢市场分为太阳能、风能和其他三类。 太阳能对绿氢的生产过程做出了重大贡献,其生产被认为是利用太阳能和应对化石燃料燃烧引起的气候变迁的一种有前途的方法。

根据最终用户,绿氢市场分为炼油、合成氨等。 炼油厂占了最大的占有率,因为炼油厂是氢气的大型工业消费者,目前大部分氢气由化石燃料提供。 实现净零排放目标的需求日益增长,推动了工业对绿氢的需求,以减少碳排放。 此外,政府也为炼油厂使用绿氢提供奖励措施,并免除电解槽的电网费用、税费,进一步提高炼油厂的市场占有率。

为了更瞭解绿氢能产业的市场采用情况,市场包括北美(美国、加拿大、北美其他地区)、欧洲(德国、英国、法国、欧洲其他地区)、亚太地区(中国、印度) 、日本)、澳洲和亚太地区其他地区)以及世界其他地区。 近年来,北美绿氢市场经历了显着成长。 主要原因是旨在满足绿氢需求的绿氢工厂正在运营,特别是交通应用。 例如,2024年,国际绿色氢气生产商H2B2电解技术公司开始营运北美最大的再生能源绿色氢气生产工厂SoHyCal。 此外,该地区的主要公司正在合作支持绿色氢工厂的发展。 例如,2024年,Hy Stor Energy和施耐德电机合作推动整合离网绿氢生产和规模化能源储存。

市场上的一些主要参与者包括 NEL ASA、ITM Power、Engie、Seimens、Air Products Inc.、Messer Group GMBH、Plug Power Inc.、Cummins Inc.、Air Liquide 和 Linde。

目录

第一章市场介绍

  • 市场定义
  • 主要目标
  • 利害关係人
  • 限制

第二章研究方法或前提

  • 调查过程
  • 调查方法
  • 受访者简介

第三章市场总结

第 4 章执行摘要

第 5 章 2020-2030 年绿氢市场收入

第 6 章 Electrolyzer 市场洞察

  • 质子交换膜电解槽
  • 碱性电解槽
  • 其他

第 7 章依来源划分的市场洞察

  • 太阳能
  • 风能
  • 其他(水力、地热、太阳能和风能混合)

第 8 章最终用户市场分析

  • 细化
  • 其他(甲醇、钢铁等)

第九章区域市场分析

  • 北美
    • 美国
    • 加拿大
    • 其他北美地区
  • 欧洲
    • 德国
    • 英国
    • 法国
    • 其他欧洲地区
  • 亚太地区
    • 中国
    • 日本
    • 印度
    • 澳大利亚
    • 其他亚太地区
  • 世界其他地区

第 10 章绿氢市场动态

  • 市场驱动因素
  • 市场课题
  • 影响分析

第 11 章绿氢市场机会

第十二章绿氢市场趋势

第十三章供需分析

  • 需求方分析
  • 供给面分析

第14章价值链分析

第15章比赛场景

  • 竞争状况
    • 波特五力分析

第十六章公司简介

  • NEL ASA
  • ITM Power
  • ENGIE
  • SEIMENS
  • Air Products Inc.
  • Messer Group GMBH
  • Plug Power Inc.
  • Cummins Inc.
  • Air LIQUIDE
  • LINDE

第十七章免责声明

简介目录
Product Code: UMEP212685

The Global green hydrogen market caters to significant market demand in the past few years. Factors that are driving its growth are the net zero emissions targets set by countries across the globe for 2030 to stimulate the renewable energy transition. Moreover, the supportive government policies, schemes, subsidies, and investment in green hydrogen production plants are further accelerating the market size of green hydrogen across the globe. In addition, various key players in the renewable sector are collaborating to reduce the price of electrolyzes which will eventually reduce the overall cost of green hydrogen production. For instance: In 2024, Schneider Electric partnered with Hy Stor Energy to support the development of the Mississippi Clean Hydrogen Hub (MCHH) and its wider U.S. development platform. This collaboration between Schneider Electric and Hy Stor Energy aims to tackle large-scale energy and sustainability challenges that are necessary for transitioning to a renewable and fossil-free energy system. Schneider Electric will provide automation and safety solutions, AVEVA process operation, AI optimization software, weather analysis, predictive operations, digital energy management solutions, commissioning, operational analytical tools, and support for Hy Stor Energy.

Based on the electrolyzer, the green hydrogen market is divided into three segments based on the electrolyzer technology used - proton exchange membranes, alkaline electrolyzers, and others. Amongst these, alkaline electrolyzers have the highest market share as it is the most common and mature technology used for green hydrogen production. Additionally, alkaline electrolyzers are cost-effective and have a long operational life.

Based on source, the green hydrogen market is divided into three categories based on source: solar energy, wind energy, and others. Solar energy contributes significantly to the green hydrogen production process, and its production is considered a promising way to use solar energy and combat climate change caused by the burning of fossil fuels.

Based on end-user, the green hydrogen market is categorized into refining, ammonia, and others. The refining segment acquired the largest share as the refinery is the large industrial consumer of hydrogen, most of which is currently supplied by fossil fuels. The rising need to meet the net zero emissions targets has escalated the demand for green hydrogen in industries to reduce carbon emissions. Moreover, the government provides incentives to use green hydrogen in refineries, and exempting electrolyzers from grid fees, taxes, and levies is further accelerating the market share of refineries.

For a better understanding of the market adoption of the green hydrogen industry, the market is analyzed based on its worldwide presence in countries such as North America (U.S., Canada, and the Rest of North America), Europe (Germany, U.K., France, Rest of Europe), Asia-Pacific (China, India, Japan, Australia, and Rest of Asia-Pacific), Rest of World. The Green Hydrogen market in North America has been witnessing significant growth in recent years. It is mainly due to the ongoing operational green hydrogen plant that aims to fufill the demand for green hydrogen, particularly for transportation applications. For instance: In 2024, H2B2 Electrolysis Technologies, an international green hydrogen producer, started operations of SoHyCal, the largest green hydrogen production plant powered entirely by renewable energy in North America. Furthermore, key players in the region are collaborating to support the development of green hydrogen plants. For instance: In 2024, Hy Stor Energy and Schneider Electric collaborated to Advance Integrated, Off-Grid Green Hydrogen Production and Energy Storage at Scale.

Some of the major players operating in the market include NEL ASA, ITM Power, Engie, Seimens, Air Products Inc., Messer Group GMBH, Plug Power Inc., Cummins Inc., Air Liquide, And Linde.

TABLE OF CONTENTS

1.MARKET INTRODUCTION

  • 1.1.Market Definitions
  • 1.2.Main Objective
  • 1.3.Stakeholders
  • 1.4.Limitation

2.RESEARCH METHODOLOGY OR ASSUMPTION

  • 2.1.Research Process of the Green Hydrogen Market
  • 2.2.Research Methodology of the Green Hydrogen Market
  • 2.3.Respondent Profile

3.MARKET SYNOPSIS

4.EXECUTIVE SUMMARY

5.GREEN HYDROGEN MARKET REVENUE (USD BN), 2020-2030F

6.MARKET INSIGHTS BY ELECTROLYZER

  • 6.1.Proton Exchange Membrane Electrolyzer
  • 6.2.Alkaline Electrolyzer
  • 6.3.Others

7.MARKET INSIGHTS BY SOURCE

  • 7.1.Solar Energy
  • 7.2.Wind Energy
  • 7.3.Others (hydropower, geothermal, and hybrid of solar & wind)

8.MARKET INSIGHTS BY END-USER

  • 8.1.Refining
  • 8.2.Ammonia
  • 8.3.Others (Methanol, Iron & Steel and others)

9.MARKET INSIGHTS BY REGION

  • 9.1.North America
    • 9.1.1.U.S.
    • 9.1.2.Canada
    • 9.1.3.Rest of North America
  • 9.2.Europe
    • 9.2.1.Germany
    • 9.2.2.U.K.
    • 9.2.3.France
    • 9.2.4.Rest of Europe
  • 9.3.Asia-Pacific
    • 9.3.1.China
    • 9.3.2.Japan
    • 9.3.3.India
    • 9.3.4.Australia
    • 9.3.5.Rest of Asia-Pacific
  • 9.4.Rest of World

10.GREEN HYDROGEN MARKET DYNAMICS

  • 10.1.Market Drivers
  • 10.2.Market Challenges
  • 10.3.Impact Analysis

11.GREEN HYDROGEN MARKET OPPORTUNITIES

12.GREEN HYDROGEN MARKET TRENDS

13.DEMAND AND SUPPLY-SIDE ANALYSIS

  • 13.1.Demand Side Analysis
  • 13.2.Supply Side Analysis

14.VALUE CHAIN ANALYSIS

15.COMPETITIVE SCENARIO

  • 15.1.Competitive Landscape
    • 15.1.1.Porters Fiver Forces Analysis

16.COMPANY PROFILED

  • 16.1.NEL ASA
  • 16.2.ITM Power
  • 16.3.ENGIE
  • 16.4.SEIMENS
  • 16.5.Air Products Inc.
  • 16.6.Messer Group GMBH
  • 16.7.Plug Power Inc.
  • 16.8.Cummins Inc.
  • 16.9.Air LIQUIDE
  • 16.10.LINDE

17.DISCLAIMER