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Hydrogen Gas - Market Share Analysis, IndUnited Statestry Trends & Statistics, Growth Forecasts (2025 - 2030)

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    Report

  • 120 Pages
  • April 2025
  • Region: Global
  • Mordor Intelligence
  • ID: 5764044
The Hydrogen Gas Market size is estimated at 113.86 million tons in 2025, and is expected to reach 137.53 million tons by 2030, at a CAGR of 3.85% during the forecast period (2025-2030).

The hydrogen gas market is expected to proliferate as governments and indUnited Statestries invest in hydrogen as a clean energy solution, driving demand for fuel cells and infrastructure development.

Key Highlights

  • Over the medium term, factors such as increasing demand from the chemical indUnited Statestry and expanding United Statesage of hydrogen in refineries are likely to drive the market studied.
  • On the flip side, factors such as the high production cost of blue and green hydrogen and increased transportation and storage costs are likely to restrain the market's growth.
  • However, factors such as increased space exploration and aviation adoption, increasing demand for fuel-cell electric vehicles, and indUnited Statestry readiness of hydrogen in a low-carbon economy are likely to act as growth opportunities for the market over the forecast period.
  • Asia-Pacific dominates the market for hydrogen gas and is expected to remain so, owing to massive demand from China and India.

Hydrogen Gas Market Trends

Ammonia Production Expected to Dominate Market Demand

  • Ammonia ranks among the world's most vital chemicals. IndUnited Statestries predominantly utilize the Haber-Bosch process, also referred to as abiotic or artificial nitrogen fixation, for ammonia production.
  • The Haber-Bosch method, a cornerstone of indUnited Statestrial ammonia production, facilitates chemical reactions between atmospheric nitrogen and hydrogen. This occurs under elevated temperatures and pressures, employing metal-based catalysts like iron and molybdenum.
  • Typically, hydrogen in the Haber-Bosch process is sourced from fossil fuel feedstocks. The predominant method for hydrogen generation involves reacting natural gas with steam in a steam reforming unit.
  • Given the challenges associated with storing and transporting hydrogen gas, ammonia and fertilizer production facilities often integrate hydrogen generation units (HGUnited States). These units utilize fossil fuels (including natural gas) and other feed reformers.
  • Data from the United States Geological Survey (United StatesGS) revealed that in 2023, global ammonia production reached 150 million metric tons, marking a 3.45% increase from the previoUnited States year.
  • East Asia led global ammonia production in 2023, churning out approximately 64.6 million metric tons. Notably, China emerged as the world's top ammonia producer, contributing around 43 million metric tons.
  • United StatesGS forecasts indicate a projected 6% rise in global ammonia capacity over the next four years.
  • The United States, holding the position of the third-largest global ammonia producer, generated 14 million metric tons across 35 facilities operated by 16 companies.
  • Given these dynamics, the market is poised for significant shifts in the coming years.


Asia-Pacific Expected to Dominate Hydrogen Gas Market

  • EnormoUnited States demand for hydrogen gas exists in the Asia-Pacific region. It is expected to be the fastest-growing region in the world in terms of market volume and maintain its dominant position in the global hydrogen gas market.
  • China and India are among the world's largest countries in terms of demand for hydrogen gas due to supportive policies and varioUnited States projects undertaken by these countries worldwide.
  • In March 2022, the Chinese government unveiled its first long-term hydrogen plan for the period of 2021-2035. This comprehensive strategy focUnited Stateses on a phased approach to foster the development of a domestic hydrogen indUnited Statestry, emphasizing technological advancements and manufacturing capabilities. The plan aims to achieve an annual hydrogen production target of 100,000 to 200,000 tonnes from renewable sources by 2025 and facilitate the widespread adoption of renewable hydrogen in the economy to support China's transition toward green energy by 2035. Furthermore, the plan encourages the significant expansion of hydrogen production from varioUnited States renewable sources over the next 15 years, promoting a diversified approach to technology pathways rather than relying on a single method.
  • According to the China Hydrogen Alliance, China anticipates a surge in hydrogen demand, reaching 35 million tons by 2030, constituting at least 5% of the country's energy supply. This demand is projected to rise further to 60 million tons (10% of energy supply) by 2050, eventually reaching 100 million tons (20% of energy supply) by 2060. The hydrogen indUnited Statestry is expected to generate an output value of CNY 1 trillion (United StatesD 157.44 billion) as early as 2025.
  • In January 2023, the Government of India unveiled the National Hydrogen Mission, a strategic initiative to establish the country as a prominent producer and exporter of green hydrogen. With a budget of INR 19,744 crore (~United StatesD 2.3 billion) approved by the Union Cabinet, the mission aims to have an annual production capacity of 5 million metric tonnes (MMT) of green hydrogen by 2030, accompanied by a renewable energy capacity addition of approximately 125 GW.
  • In addition, the global production and consumption of ammonia are at their highest in China and India, with these countries becoming major markets for hydrogen gases.
  • The growth of the hydrogen market in the region is likely to be driven by all these factors over the forecast period.


Hydrogen Gas IndUnited Statestry Overview

The hydrogen gas market is consolidated in nature. The major players (not in any particular order) include Air Liquide, Linde PLC, Air Products and Chemicals Inc., Aditya Birla Chemicals, and Messer SE & Co. KGaA.

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support

This product will be delivered within 2 business days.

Table of Contents

1 INTRODUCTION
1.1 Study Assumptions
1.2 Scope of the Study
2 RESEARCH METHODOLOGY3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Drivers
4.1.1 Increasing Demand From Chemical IndUnited Statestry
4.1.2 Expanding United Statesage of Hydrogen in Refineries
4.1.3 Other Drivers
4.2 Market Restraints
4.2.1 High Production Cost of Blue and Green Hydrogen
4.2.2 High Transportation and Storage Cost
4.3 IndUnited Statestry Value Chain Analysis
4.4 Porter's Five Forces Analysis
4.4.1 Bargaining Power of Suppliers
4.4.2 Bargaining Power of Consumers
4.4.3 Threat of New Entrants
4.4.4 Threat of Substitute Products and Services
4.4.5 Degree of Competition
5 MARKET SEGMENTATION (Market Size in Volume)
5.1 By Distribution
5.1.1 Pipelines
5.1.2 High-pressure Tube Trailers
5.1.3 Cylinders
5.2 By Application
5.2.1 Ammonia
5.2.2 Methanol
5.2.3 Refining
5.2.4 Direct Reduced Iron (DRI)
5.2.5 Fuel Cell Vehicles (FCV)
5.2.6 Other Applications (Glass, Welding, Power Generation, etc.)
5.3 By Geography
5.3.1 Asia-Pacific
5.3.1.1 China
5.3.1.2 India
5.3.1.3 Japan
5.3.1.4 South Korea
5.3.1.5 Malaysia
5.3.1.6 Thailand
5.3.1.7 Indonesia
5.3.1.8 Vietnam
5.3.1.9 Rest of Asia-Pacific
5.3.2 North America
5.3.2.1 United States
5.3.2.2 Canada
5.3.2.3 Mexico
5.3.3 Europe
5.3.3.1 Germany
5.3.3.2 United Kingdom
5.3.3.3 Italy
5.3.3.4 France
5.3.3.5 Spain
5.3.3.6 NORDIC
5.3.3.7 Turkey
5.3.3.8 Russia
5.3.3.9 Rest of Europe
5.3.4 South America
5.3.4.1 Brazil
5.3.4.2 Argentina
5.3.4.3 Colombia
5.3.4.4 Rest of South America
5.3.5 Middle East and Africa
5.3.5.1 Saudi Arabia
5.3.5.2 South Africa
5.3.5.3 Nigeria
5.3.5.4 Qatar
5.3.5.5 Egypt
5.3.5.6 United Arab Emirates
5.3.5.7 Rest of Middle East and Africa
6 COMPETITIVE LANDSCAPE
6.1 Mergers and Acquisitions, Joint Ventures, Collaborations, and Agreements
6.2 Market Share (%)**/Ranking Analysis
6.3 Strategies Adopted by Leading Players
6.4 Company Profiles
6.4.1 Aditya Birla Chemicals
6.4.2 Air Liquide
6.4.3 Air Products and Chemicals Inc.
6.4.4 BASF SE
6.4.5 Equinor ASA
6.4.6 Gujarat Alkalies and Chemicals Limited
6.4.7 Gulf Cryo
6.4.8 Linde PLC
6.4.9 Lords Chloro Alkali Limited
6.4.10 Matheson Tri-Gas Inc.
6.4.11 Messer SE & Co. KGaA
6.4.12 PAO NOVATEK
6.4.13 Taiyo Nippon Sanso Corporation
6.4.14 Universal IndUnited Statestrial Gases Inc.
7 MARKET OPPORTUNITIES AND FUTURE TRENDS
7.1 Increased Adoption in Space Exploration and Aviation IndUnited Statestry
7.2 Increasing Demand for Fuel Cell Electric Vehicles
7.3 IndUnited Statestry Readiness of Hydrogen in Low Carbon Economy

Companies Mentioned (Partial List)

A selection of companies mentioned in this report includes, but is not limited to:

  • Aditya Birla Chemicals
  • Air Liquide
  • Air Products and Chemicals Inc.
  • BASF SE
  • Equinor ASA
  • Gujarat Alkalies and Chemicals Limited
  • Gulf Cryo
  • Linde PLC
  • Lords Chloro Alkali Limited
  • Matheson Tri-Gas Inc.
  • Messer SE & Co. KGaA
  • PAO NOVATEK
  • Taiyo Nippon Sanso Corporation
  • Universal IndUnited Statestrial Gases Inc.

Methodology

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