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Global Methanation Catalysts Market Research Report 2024(Status and Outlook)

Global Methanation Catalysts Market Research Report 2024(Status and Outlook)

  • Category:Chemicals and Materials
  • Published on : 07 October 2024
  • Pages :129
  • Formats:
  • Report Code:24MRES-7938593
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Industry Overview

The "Global Methanation Catalyst Market" was valued at US$ 67.00 million in 2024 and is projected to reach US$ 75.45 million by 2030, at a CAGR of 2.0% during the forecast period.

Methanation catalysts. Methanation is the reaction by which carbon oxides and hydrogen are converted to methane and water. The reaction is catalysed by nickel catalysts. In industry, there are two main uses for methanation, to purify synthesis gas (i.e. remove traces of carbon oxides) and to manufacture methane.

The manufacture of synthetic natural gas (SNG) from hydrogen and carbon dioxide or carbon monoxide depends on the methanation catalyst industry. By permitting the conversion of excess renewable energy into transportable and storable methane, it significantly contributes to the reduction of greenhouse gas emissions and the improvement of energy efficiency. These catalysts are widely utilised in industries including energy, chemicals, and waste management. They are usually made of metals like nickel, cobalt, and ruthenium. The market is driven by the increasing use of Power-to-Gas (P2G) technologies, which make it easier to convert renewable energy sources into hydrogen, which is then mechanized to produce SNG and the growing demand for greener energy alternatives.

Improvements in catalyst compositions to boost selectivity, lower carbon deposition, and better operational stability are some of the major trends in the methanation catalyst market. The sector also has to deal with issues including the price of raw materials, sophisticated technology, and environmental restrictions. The methanation catalyst market is anticipated to expand as countries work to decarbonise their energy systems, particularly in areas like Europe and Asia-Pacific that are leading the way in hydrogen economy projects.

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Segmental Analysis

Aluminium Oxide to hold the highest market share: By Type

The global methanation catalyst market can be segmented by catalyst type, typically broken down into Aluminum Oxide Carrier, Composite Carrier, and Others.

In the global methanation catalyst market, the Aluminium Oxide Carrier segment has the largest market share. Because of their great mechanical strength, thermal stability, and affordability, aluminium oxide-based carriers are a preferred option for supporting active metals like nickel, which are crucial for the methanation reaction. Due to its adaptability to a wide range of industrial applications—particularly in the chemical and energy sectors, where large-scale methanation processes are prevalent—this segment dominates the market. Because of their strong performance and capacity to tolerate the high temperatures needed for methanation reactions, aluminium oxide carriers are more durable and effective over longer operating times. Furthermore, aluminium oxide carriers continue to be a favoured option as companies place a greater emphasis on affordable methods of producing synthetic natural gas, thus reinforcing their dominant position in the methanation catalyst industry.

The Composite Carrier category is the second-largest user base. To improve catalyst performance, composite carriers are usually created by mixing materials like silica, ceria, or zirconia with other supports. These carriers are appropriate for larger-scale methanation applications because they have advantages in terms of enhanced catalytic activity, selectivity, and resistance to sintering and poisoning. Composite carriers are frequently used by industries that demand more robustness and efficiency, particularly when operating in difficult environments or looking to increase methane output

Although composite carriers are more expensive than aluminum oxide, their superior characteristics justify the investment in scenarios that demand long-lasting, high-performance catalysts.

Coat to Gas segment holds the highest market share: Application

The global methanation catalyst market can be segmented by catalyst type, typically broken down into Coal to Gas, Coke Oven Gas to Gas, CO Removal, CO2 Removal.

The coal-to-gas application, which accounts for 40–45% of the global methanation catalyst market, has the largest market share. In areas with plentiful coal deposits, such as China and India, the Coal to Gas process—which turns syngas obtained from coal into synthetic natural gas, or SNG—is extensively utilised. Because coal gasification technology is widely used for energy production—methanation catalysts being a major factor in the conversion of syngas into methane—this sector leads the market. The method is preferred because it can turn coal into cleaner fuel, lowering the need for more polluting direct coal combustion.

The market shares of the remaining applications, CO Removal, CO2 Removal, and Coke Oven Gas to Gas, are lower. While CO Removal and COâ‚‚ Removal are mostly employed for refining syngas to meet quality criteria for downstream applications or environmental compliance, Coke Oven Gas to Gas is a substantial segment, particularly in the steel industry.

Regional Overview

The market for methanation catalysts demonstrates a range of regional trends, with notable activity observed in Asia-Pacific, Europe, and North America. Asia-Pacific retains the greatest share of the market, driven by nations like China and India, where coal-to-gas conversion projects are important due to substantial coal supplies and a strong focus on cleaner coal technology. These nations spend extensively in synthetic natural gas (SNG) production as they aim to reconcile energy security with environmental sustainability. Europe is another significant market, driven mostly by the region's adoption of renewable energy sources and decarbonisation efforts. In this case, methanation catalysts are necessary for Power-to-Gas (P2G) initiatives, which transform surplus renewable energy into methane that may be stored. The focus on green hydrogen and synthetic methane as part of the hydrogen economy is driving growth in European markets.

North America exhibits much promise as well, especially in light of rising investments in carbon capture and renewable energy integration technology. In an effort to lower greenhouse gas emissions, the US is seeing an increase in interest in using methanation to upgrade biogas and remove carbon dioxide. Although the market is expanding in other regions, such as Latin America and the Middle East, the key growth drivers are still centred on Asia-Pacific, Europe, and North America, where there is the greatest combination of industry investments, technology breakthroughs, and regulatory backing.

Competitive Analysis

  • Haldor Topsoe
  • Johnson Matthey
  • BASF
  • Clariant
  • INS Pulawy
  • JGC C&C
  • Jiangxi Huihua
  • Anchun
  • CAS KERRY
  • Sichuan Shutai
  • Dalian Catalytic
  • Other Key Players

There are numerous major competitors in the competitive methanation catalyst industry that are competing for market share through partnerships, innovation, and global expansion. Prominent corporations such as BASF SE, Johnson Matthey, Haldor Topsoe, and Clariant have gained recognition for their well-established catalyst technologies expertise and robust global footprint. These businesses make use of their broad R&D resources to improve catalyst lifetime, cost-effectiveness, and efficiency—all of which are vital differentiators in this industry.

The industry is characterised by intense competition, especially in the Asia-Pacific area, where regional firms are making headway by concentrating on large-scale coal-to-gas projects and providing cost-competitive solutions. Green and sustainable solutions are the centre of competitiveness in North America and Europe, where businesses are heavily investing in catalysts designed for carbon dioxide removal and Power-to-Gas (P2G) applications in order to meet regional decarbonisation targets. Furthermore, in an effort to improve their market positions and obtain access to new client segments, several businesses are establishing strategic alliances with energy and utility corporations. The market is anticipated to remain competitive, with innovation and sustainability serving as primary drivers, given the growing need for synthetic natural gas (SNG) production and the integration of renewable energy sources.

Recent Development

Nov 11th, 2022, Clariant & Technip Energies announced the launch of EARTH® which is a Pioneering technology to reduce the CO2 footprint of steam methane reforming.Clariant’s focus on sustainability continues to expan. The collaboration on Technip Energies’ innovative technology solutions and the companies catalysis expertise has resulted in EARTH: a breakthrough in steam methane reforming that reduces the CO2 footprint of the process up to 20%. Being the acronym of “enhanced annular reforming tube for hydrogen,”

May 25th 2022, INERATEC and Clariant Joined forces for a cleaner future. “The collaboration with Clariant during our scale-up phase was one crucial part for the successful deployment at industrial scale” CEO Tim Boeltken

April 16th 2024, Topsoe, a global leader in carbon emission reduction technologies, has signed an agreement with Cepsa, a leading international company committed to sustainable mobility. According to the agreement, Topsoe will provide its HydroFlex™ technology for the production of SAF and renewable diesel at the new plant of Cepsa’ Bioenergia San Roque (CBSR) , a joint venture between Cepsa and Bio-Oils Energy, part of Apical Group, in Palos de la Frontera, Spain.

March 26thh, 2024, Topsoe, a global leader in carbon emission reduction technologies, has reached a key milestone in the form of environmental permit from the Danish Environmental Agency.

End Use Industry Analysis 

The end-use industries that make up the majority of the para-methanation catalyst market are chemicals, petrochemicals, and renewable energy, oil and gas, energy and power etc. . These catalysts are essential for the chemical industry's hydrogenation processes, which help change unsaturated hydrocarbons into saturated hydrocarbons. Applications in the production of intermediates for different chemical products, like solvents and polymers, are what are driving the demand. Para-methanation catalysts play a critical role in the petrochemical industry's refining processes, particularly in the generation of synthetic fuels and methane-rich gases, where they improve fuel quality and efficiency. Cleaner fuels and energy sources are becoming more and more necessary, which is helping this industry flourish.

The growing use of Power-to-Gas (PtG) technology is causing the renewable energy industry to become one of the major users of para-methanation catalysts. This is the process of turning excess renewable energy into methane, a green energy source that can be transported and stored. The need for sustainable energy solutions is anticipated to increase as governments and businesses around the world seek for more renewable energy sources, which will help the para-methanation catalyst industry as a whole.

Industry Dynamics

Industry Trends

Growing adoption of Power-to-Gas (PtG) technology

The increasing use of Power-to-Gas (PtG) technology in the renewable energy sector is an significant trend in the para-methanation catalyst market. The need to address the intermittent issues with renewable energy sources, such as wind and solar power, and the worldwide need for sustainable energy solutions are driving this development. With PtG technology, excess renewable electricity may be converted into methane gas, which can be transported, stored, and used as a renewable energy source. This process involves the use of para-methanation catalysts to enhance the reaction between carbon dioxide (COâ‚‚) and hydrogen (Hâ‚‚), creating methane (CHâ‚„) and water as by products.

Methane's adaptability and storage potential are two major factors driving this trend. Methane can be integrated into the current natural gas infrastructure, allowing for significant storage and distribution, unlike electricity, which is difficult to store at scale. This ensures a more steady and dependable energy supply by balancing the supply-demand swings typical of renewable energy.

As countries and corporations set ambitious targets for carbon neutrality, the role of methanation catalysts in PtG technology is becoming more significant. This trend is particularly evident in regions such as Europe and North America, where stringent environmental regulations and incentives for green energy projects are encouraging the adoption of PtG systems. For instance, the European Union has been actively promoting hydrogen-based energy storage solutions as part of its Green Deal, which seeks to make Europe the first climate-neutral continent by 2050.

Industry Driver

Shift Toward Renewable Energy and Carbon Neutrality Goals

One major factor propelling the global methanation catalyst market is the trend towards carbon neutrality and renewable energy targets. Technologies that can effectively store and use renewable energy are desperately needed as nations mount greater efforts to tackle climate change. Methanation catalysts are essential components of Power-to-Gas (PtG) systems, which facilitate the conversion of excess renewable energy produced by solar or wind power plants into synthetic methane. It is possible to store this methane and use it later on as a source of energy, especially at times when there is a strong demand for energy or when the production of renewable energy is low.

PtG systems have two advantages: they lower greenhouse gas emissions and improve energy storage capacities. These systems allow the recycling of carbon dioxide (COâ‚‚), which would otherwise contribute to atmospheric emissions, by absorbing and converting COâ‚‚ during the methanation process. The carbon neutrality goals that numerous nations have established as part of their climate action programs are supported by this strategy. For instance, the European Union has lofty aims to establish carbon neutrality by 2050, and PtG technology, driven by methanation catalysts, is a possible instrument to help achieve these targets.

Furthermore, methanation catalyst-based PtG systems provide a means of stabilising renewable energy grids, which are frequently hampered by the intermittent nature of solar and wind power. Methane is a desirable alternative for renewable energy storage since it can be included into the current natural gas infrastructure, where it may be distributed via well-established pipelines and kept for an extended period of time. This stored synthetic methane can subsequently be turned back into electricity or employed in numerous sectors, including transportation and industrial, hence boosting energy flexibility.

Industry Restraint

Higher Dependency on Hydrogen Supply

Since methanation processes significantly rely on hydrogen to convert carbon dioxide (COâ‚‚) into methane, the market for methanation catalysts is severely constrained by the availability of hydrogen. But producing hydrogen, particularly green hydrogen, is expensive and energy-intensive. Electrolysis using sustainable energy sources, such solar or wind power, produces green hydrogen. Despite being sustainable, this process has significant production costs because of the cost of the electrolysis technology and the renewable energy required to run it.

The cost of green hydrogen remains a significant barrier to the economic viability of methanation on a large scale. Electrolyzers are expensive, and their efficiency is still a challenge, which makes green hydrogen notably more costly than its conventional counterpart, gray hydrogen, which is derived from fossil fuels. Additionally, because green hydrogen production depends on renewable energy sources, its availability can be inconsistent, especially in regions that lack the infrastructure or resources to produce renewable energy on a reliable basis.

Moreover, hydrogen price volatility can further impede the adoption of methanation technology. Fluctuating hydrogen prices, driven by factors like energy market dynamics and technological advancements, can make it challenging for industries to plan long-term investments in methanation systems. This price instability can deter companies from adopting methanation technologies, especially in regions that lack subsidies or incentives to offset these costs.

Report Scope

The report includes Global & Regional market status and outlook for 2017-2028. Further, the report provides breakdown details about each region & countries covered in the report. Identifying its sales, sales volume & revenue forecast. With detailed analysis by Types, Application, End Use Industry, Installation. The report also covers the key players of the industry including Company Profile, Product Specifications, Production Capacity/Sales, Revenue, Price, and Gross Margin 2017-2028 & Sales with a thorough analysis of the market’s competitive landscape and detailed information on vendors and comprehensive details of factors that will challenge the growth of major market vendors.

 

Attributes

Details

 

 

Segments

By Type

  • Aluminum Oxide Carrier
  • Composite Carrier
  • Others

By Application

  • Coal to Gas
  • Coke Oven Gas to Gas
  • CO Removal
  • CO2 Removal

By End Use Industry

  • Energy & Power
  • Chemicals
  • Oil & Gas
  • Waste Management
  • Industrial Manufacturing
  • Others (Research and Development, etc.)

 

Region Covered

  • North America
  • Europe
  • Asia Pacific
  • Middle East and Africa
  • South Africa

 

 

Key Market Players

  • Haldor Topsoe
  • Johnson Matthey
  • BASF
  • Clariant
  • INS Pulawy
  • JGC C&C
  • Jiangxi Huihua
  • Anchun
  • CAS KERRY
  • Sichuan Shutai
  • Dalian Catalytic
  • Other Key Players

 

 

Report Coverage

  • Industry Trends   
    • SWOT Analysis
    • PESTEL Analysis
    • Porter’s Five Forces Analysis
  • Market Competition by Manufacturers
  • Key Companies Profiled
  • Marketing Channel, Distributors and Customers
  • Market Dynamics
  • Production and Supply Forecast
  • Demand Forecast
  • Research Findings and Conclusion

TABLE OF CONTENTS

Table of Contents
1 Research Methodology and Statistical Scope
1.1 Market Definition and Statistical Scope of Industrial Methanation Catalysts
1.2 Key Market Segments
1.2.1 Industrial Methanation Catalysts Segment by Type
1.2.2 Industrial Methanation Catalysts Segment by Application
1.3 Methodology & Sources of Information
1.3.1 Research Methodology
1.3.2 Research Process
1.3.3 Market Breakdown and Data Triangulation
1.3.4 Base Year
1.3.5 Report Assumptions & Caveats
2 Industrial Methanation Catalysts Market Overview
2.1 Global Market Overview
2.1.1 Global Industrial Methanation Catalysts Market Size (M USD) Estimates and Forecasts (2019-2030)
2.1.2 Global Industrial Methanation Catalysts Sales Estimates and Forecasts (2019-2030)
2.2 Market Segment Executive Summary
2.3 Global Market Size by Region
3 Industrial Methanation Catalysts Market Competitive Landscape
3.1 Global Industrial Methanation Catalysts Sales by Manufacturers (2019-2024)
3.2 Global Industrial Methanation Catalysts Revenue Market Share by Manufacturers (2019-2024)
3.3 Industrial Methanation Catalysts Market Share by Company Type (Tier 1, Tier 2, and Tier 3)
3.4 Global Industrial Methanation Catalysts Average Price by Manufacturers (2019-2024)
3.5 Manufacturers Industrial Methanation Catalysts Sales Sites, Area Served, Product Type
3.6 Industrial Methanation Catalysts Market Competitive Situation and Trends
3.6.1 Industrial Methanation Catalysts Market Concentration Rate
3.6.2 Global 5 and 10 Largest Industrial Methanation Catalysts Players Market Share by Revenue
3.6.3 Mergers & Acquisitions, Expansion
4 Industrial Methanation Catalysts Industry Chain Analysis
4.1 Industrial Methanation Catalysts Industry Chain Analysis
4.2 Market Overview of Key Raw Materials
4.3 Midstream Market Analysis
4.4 Downstream Customer Analysis
5 The Development and Dynamics of Industrial Methanation Catalysts Market
5.1 Key Development Trends
5.2 Driving Factors
5.3 Market Challenges
5.4 Market Restraints
5.5 Industry News
5.5.1 New Product Developments
5.5.2 Mergers & Acquisitions
5.5.3 Expansions
5.5.4 Collaboration/Supply Contracts
5.6 Industry Policies
6 Industrial Methanation Catalysts Market Segmentation by Type
6.1 Evaluation Matrix of Segment Market Development Potential (Type)
6.2 Global Industrial Methanation Catalysts Sales Market Share by Type (2019-2024)
6.3 Global Industrial Methanation Catalysts Market Size Market Share by Type (2019-2024)
6.4 Global Industrial Methanation Catalysts Price by Type (2019-2024)
7 Industrial Methanation Catalysts Market Segmentation by Application
7.1 Evaluation Matrix of Segment Market Development Potential (Application)
7.2 Global Industrial Methanation Catalysts Market Sales by Application (2019-2024)
7.3 Global Industrial Methanation Catalysts Market Size (M USD) by Application (2019-2024)
7.4 Global Industrial Methanation Catalysts Sales Growth Rate by Application (2019-2024)
8 Industrial Methanation Catalysts Market Segmentation by Region
8.1 Global Industrial Methanation Catalysts Sales by Region
8.1.1 Global Industrial Methanation Catalysts Sales by Region
8.1.2 Global Industrial Methanation Catalysts Sales Market Share by Region
8.2 North America
8.2.1 North America Industrial Methanation Catalysts Sales by Country
8.2.2 U.S.
8.2.3 Canada
8.2.4 Mexico
8.3 Europe
8.3.1 Europe Industrial Methanation Catalysts Sales by Country
8.3.2 Germany
8.3.3 France
8.3.4 U.K.
8.3.5 Italy
8.3.6 Russia
8.4 Asia Pacific
8.4.1 Asia Pacific Industrial Methanation Catalysts Sales by Region
8.4.2 China
8.4.3 Japan
8.4.4 South Korea
8.4.5 India
8.4.6 Southeast Asia
8.5 South America
8.5.1 South America Industrial Methanation Catalysts Sales by Country
8.5.2 Brazil
8.5.3 Argentina
8.5.4 Columbia
8.6 Middle East and Africa
8.6.1 Middle East and Africa Industrial Methanation Catalysts Sales by Region
8.6.2 Saudi Arabia
8.6.3 UAE
8.6.4 Egypt
8.6.5 Nigeria
8.6.6 South Africa
9 Key Companies Profile
9.1 Johnson Matthey
9.1.1 Johnson Matthey Industrial Methanation Catalysts Basic Information
9.1.2 Johnson Matthey Industrial Methanation Catalysts Product Overview
9.1.3 Johnson Matthey Industrial Methanation Catalysts Product Market Performance
9.1.4 Johnson Matthey Business Overview
9.1.5 Johnson Matthey Industrial Methanation Catalysts SWOT Analysis
9.1.6 Johnson Matthey Recent Developments
9.2 Topsoe
9.2.1 Topsoe Industrial Methanation Catalysts Basic Information
9.2.2 Topsoe Industrial Methanation Catalysts Product Overview
9.2.3 Topsoe Industrial Methanation Catalysts Product Market Performance
9.2.4 Topsoe Business Overview
9.2.5 Topsoe Industrial Methanation Catalysts SWOT Analysis
9.2.6 Topsoe Recent Developments
9.3 BASF
9.3.1 BASF Industrial Methanation Catalysts Basic Information
9.3.2 BASF Industrial Methanation Catalysts Product Overview
9.3.3 BASF Industrial Methanation Catalysts Product Market Performance
9.3.4 BASF Industrial Methanation Catalysts SWOT Analysis
9.3.5 BASF Business Overview
9.3.6 BASF Recent Developments
9.4 JGC CandC
9.4.1 JGC CandC Industrial Methanation Catalysts Basic Information
9.4.2 JGC CandC Industrial Methanation Catalysts Product Overview
9.4.3 JGC CandC Industrial Methanation Catalysts Product Market Performance
9.4.4 JGC CandC Business Overview
9.4.5 JGC CandC Recent Developments
9.5 Sichuan Shutai
9.5.1 Sichuan Shutai Industrial Methanation Catalysts Basic Information
9.5.2 Sichuan Shutai Industrial Methanation Catalysts Product Overview
9.5.3 Sichuan Shutai Industrial Methanation Catalysts Product Market Performance
9.5.4 Sichuan Shutai Business Overview
9.5.5 Sichuan Shutai Recent Developments
9.6 Jiangxi Huihua
9.6.1 Jiangxi Huihua Industrial Methanation Catalysts Basic Information
9.6.2 Jiangxi Huihua Industrial Methanation Catalysts Product Overview
9.6.3 Jiangxi Huihua Industrial Methanation Catalysts Product Market Performance
9.6.4 Jiangxi Huihua Business Overview
9.6.5 Jiangxi Huihua Recent Developments
9.7 Clariant AG
9.7.1 Clariant AG Industrial Methanation Catalysts Basic Information
9.7.2 Clariant AG Industrial Methanation Catalysts Product Overview
9.7.3 Clariant AG Industrial Methanation Catalysts Product Market Performance
9.7.4 Clariant AG Business Overview
9.7.5 Clariant AG Recent Developments
9.8 INS Pulawy
9.8.1 INS Pulawy Industrial Methanation Catalysts Basic Information
9.8.2 INS Pulawy Industrial Methanation Catalysts Product Overview
9.8.3 INS Pulawy Industrial Methanation Catalysts Product Market Performance
9.8.4 INS Pulawy Business Overview
9.8.5 INS Pulawy Recent Developments
9.9 Anchun
9.9.1 Anchun Industrial Methanation Catalysts Basic Information
9.9.2 Anchun Industrial Methanation Catalysts Product Overview
9.9.3 Anchun Industrial Methanation Catalysts Product Market Performance
9.9.4 Anchun Business Overview
9.9.5 Anchun Recent Developments
9.10 Hubei Huihuang
9.10.1 Hubei Huihuang Industrial Methanation Catalysts Basic Information
9.10.2 Hubei Huihuang Industrial Methanation Catalysts Product Overview
9.10.3 Hubei Huihuang Industrial Methanation Catalysts Product Market Performance
9.10.4 Hubei Huihuang Business Overview
9.10.5 Hubei Huihuang Recent Developments
9.11 Liaoning Haitai
9.11.1 Liaoning Haitai Industrial Methanation Catalysts Basic Information
9.11.2 Liaoning Haitai Industrial Methanation Catalysts Product Overview
9.11.3 Liaoning Haitai Industrial Methanation Catalysts Product Market Performance
9.11.4 Liaoning Haitai Business Overview
9.11.5 Liaoning Haitai Recent Developments
9.12 CAS KERRY
9.12.1 CAS KERRY Industrial Methanation Catalysts Basic Information
9.12.2 CAS KERRY Industrial Methanation Catalysts Product Overview
9.12.3 CAS KERRY Industrial Methanation Catalysts Product Market Performance
9.12.4 CAS KERRY Business Overview
9.12.5 CAS KERRY Recent Developments
9.13 Dalian Catalytic
9.13.1 Dalian Catalytic Industrial Methanation Catalysts Basic Information
9.13.2 Dalian Catalytic Industrial Methanation Catalysts Product Overview
9.13.3 Dalian Catalytic Industrial Methanation Catalysts Product Market Performance
9.13.4 Dalian Catalytic Business Overview
9.13.5 Dalian Catalytic Recent Developments
10 Industrial Methanation Catalysts Market Forecast by Region
10.1 Global Industrial Methanation Catalysts Market Size Forecast
10.2 Global Industrial Methanation Catalysts Market Forecast by Region
10.2.1 North America Market Size Forecast by Country
10.2.2 Europe Industrial Methanation Catalysts Market Size Forecast by Country
10.2.3 Asia Pacific Industrial Methanation Catalysts Market Size Forecast by Region
10.2.4 South America Industrial Methanation Catalysts Market Size Forecast by Country
10.2.5 Middle East and Africa Forecasted Consumption of Industrial Methanation Catalysts by Country
11 Forecast Market by Type and by Application (2025-2030)
11.1 Global Industrial Methanation Catalysts Market Forecast by Type (2025-2030)
11.1.1 Global Forecasted Sales of Industrial Methanation Catalysts by Type (2025-2030)
11.1.2 Global Industrial Methanation Catalysts Market Size Forecast by Type (2025-2030)
11.1.3 Global Forecasted Price of Industrial Methanation Catalysts by Type (2025-2030)
11.2 Global Industrial Methanation Catalysts Market Forecast by Application (2025-2030)
11.2.1 Global Industrial Methanation Catalysts Sales (Kilotons) Forecast by Application
11.2.2 Global Industrial Methanation Catalysts Market Size (M USD) Forecast by Application (2025-2030)
12 Conclusion and Key Findings

LIST OF TABLES & FIGURES

List of Tables
Table 1. Introduction of the Type
Table 2. Introduction of the Application
Table 3. Market Size (M USD) Segment Executive Summary
Table 4. Industrial Methanation Catalysts Market Size Comparison by Region (M USD)
Table 5. Global Industrial Methanation Catalysts Sales (Kilotons) by Manufacturers (2019-2024)
Table 6. Global Industrial Methanation Catalysts Sales Market Share by Manufacturers (2019-2024)
Table 7. Global Industrial Methanation Catalysts Revenue (M USD) by Manufacturers (2019-2024)
Table 8. Global Industrial Methanation Catalysts Revenue Share by Manufacturers (2019-2024)
Table 9. Company Type (Tier 1, Tier 2, and Tier 3) & (based on the Revenue in Industrial Methanation Catalysts as of 2022)
Table 10. Global Market Industrial Methanation Catalysts Average Price (USD/Ton) of Key Manufacturers (2019-2024)
Table 11. Manufacturers Industrial Methanation Catalysts Sales Sites and Area Served
Table 12. Manufacturers Industrial Methanation Catalysts Product Type
Table 13. Global Industrial Methanation Catalysts Manufacturers Market Concentration Ratio (CR5 and HHI)
Table 14. Mergers & Acquisitions, Expansion Plans
Table 15. Industry Chain Map of Industrial Methanation Catalysts
Table 16. Market Overview of Key Raw Materials
Table 17. Midstream Market Analysis
Table 18. Downstream Customer Analysis
Table 19. Key Development Trends
Table 20. Driving Factors
Table 21. Industrial Methanation Catalysts Market Challenges
Table 22. Global Industrial Methanation Catalysts Sales by Type (Kilotons)
Table 23. Global Industrial Methanation Catalysts Market Size by Type (M USD)
Table 24. Global Industrial Methanation Catalysts Sales (Kilotons) by Type (2019-2024)
Table 25. Global Industrial Methanation Catalysts Sales Market Share by Type (2019-2024)
Table 26. Global Industrial Methanation Catalysts Market Size (M USD) by Type (2019-2024)
Table 27. Global Industrial Methanation Catalysts Market Size Share by Type (2019-2024)
Table 28. Global Industrial Methanation Catalysts Price (USD/Ton) by Type (2019-2024)
Table 29. Global Industrial Methanation Catalysts Sales (Kilotons) by Application
Table 30. Global Industrial Methanation Catalysts Market Size by Application
Table 31. Global Industrial Methanation Catalysts Sales by Application (2019-2024) & (Kilotons)
Table 32. Global Industrial Methanation Catalysts Sales Market Share by Application (2019-2024)
Table 33. Global Industrial Methanation Catalysts Sales by Application (2019-2024) & (M USD)
Table 34. Global Industrial Methanation Catalysts Market Share by Application (2019-2024)
Table 35. Global Industrial Methanation Catalysts Sales Growth Rate by Application (2019-2024)
Table 36. Global Industrial Methanation Catalysts Sales by Region (2019-2024) & (Kilotons)
Table 37. Global Industrial Methanation Catalysts Sales Market Share by Region (2019-2024)
Table 38. North America Industrial Methanation Catalysts Sales by Country (2019-2024) & (Kilotons)
Table 39. Europe Industrial Methanation Catalysts Sales by Country (2019-2024) & (Kilotons)
Table 40. Asia Pacific Industrial Methanation Catalysts Sales by Region (2019-2024) & (Kilotons)
Table 41. South America Industrial Methanation Catalysts Sales by Country (2019-2024) & (Kilotons)
Table 42. Middle East and Africa Industrial Methanation Catalysts Sales by Region (2019-2024) & (Kilotons)
Table 43. Johnson Matthey Industrial Methanation Catalysts Basic Information
Table 44. Johnson Matthey Industrial Methanation Catalysts Product Overview
Table 45. Johnson Matthey Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 46. Johnson Matthey Business Overview
Table 47. Johnson Matthey Industrial Methanation Catalysts SWOT Analysis
Table 48. Johnson Matthey Recent Developments
Table 49. Topsoe Industrial Methanation Catalysts Basic Information
Table 50. Topsoe Industrial Methanation Catalysts Product Overview
Table 51. Topsoe Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 52. Topsoe Business Overview
Table 53. Topsoe Industrial Methanation Catalysts SWOT Analysis
Table 54. Topsoe Recent Developments
Table 55. BASF Industrial Methanation Catalysts Basic Information
Table 56. BASF Industrial Methanation Catalysts Product Overview
Table 57. BASF Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 58. BASF Industrial Methanation Catalysts SWOT Analysis
Table 59. BASF Business Overview
Table 60. BASF Recent Developments
Table 61. JGC CandC Industrial Methanation Catalysts Basic Information
Table 62. JGC CandC Industrial Methanation Catalysts Product Overview
Table 63. JGC CandC Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 64. JGC CandC Business Overview
Table 65. JGC CandC Recent Developments
Table 66. Sichuan Shutai Industrial Methanation Catalysts Basic Information
Table 67. Sichuan Shutai Industrial Methanation Catalysts Product Overview
Table 68. Sichuan Shutai Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 69. Sichuan Shutai Business Overview
Table 70. Sichuan Shutai Recent Developments
Table 71. Jiangxi Huihua Industrial Methanation Catalysts Basic Information
Table 72. Jiangxi Huihua Industrial Methanation Catalysts Product Overview
Table 73. Jiangxi Huihua Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 74. Jiangxi Huihua Business Overview
Table 75. Jiangxi Huihua Recent Developments
Table 76. Clariant AG Industrial Methanation Catalysts Basic Information
Table 77. Clariant AG Industrial Methanation Catalysts Product Overview
Table 78. Clariant AG Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 79. Clariant AG Business Overview
Table 80. Clariant AG Recent Developments
Table 81. INS Pulawy Industrial Methanation Catalysts Basic Information
Table 82. INS Pulawy Industrial Methanation Catalysts Product Overview
Table 83. INS Pulawy Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 84. INS Pulawy Business Overview
Table 85. INS Pulawy Recent Developments
Table 86. Anchun Industrial Methanation Catalysts Basic Information
Table 87. Anchun Industrial Methanation Catalysts Product Overview
Table 88. Anchun Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 89. Anchun Business Overview
Table 90. Anchun Recent Developments
Table 91. Hubei Huihuang Industrial Methanation Catalysts Basic Information
Table 92. Hubei Huihuang Industrial Methanation Catalysts Product Overview
Table 93. Hubei Huihuang Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 94. Hubei Huihuang Business Overview
Table 95. Hubei Huihuang Recent Developments
Table 96. Liaoning Haitai Industrial Methanation Catalysts Basic Information
Table 97. Liaoning Haitai Industrial Methanation Catalysts Product Overview
Table 98. Liaoning Haitai Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 99. Liaoning Haitai Business Overview
Table 100. Liaoning Haitai Recent Developments
Table 101. CAS KERRY Industrial Methanation Catalysts Basic Information
Table 102. CAS KERRY Industrial Methanation Catalysts Product Overview
Table 103. CAS KERRY Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 104. CAS KERRY Business Overview
Table 105. CAS KERRY Recent Developments
Table 106. Dalian Catalytic Industrial Methanation Catalysts Basic Information
Table 107. Dalian Catalytic Industrial Methanation Catalysts Product Overview
Table 108. Dalian Catalytic Industrial Methanation Catalysts Sales (Kilotons), Revenue (M USD), Price (USD/Ton) and Gross Margin (2019-2024)
Table 109. Dalian Catalytic Business Overview
Table 110. Dalian Catalytic Recent Developments
Table 111. Global Industrial Methanation Catalysts Sales Forecast by Region (2025-2030) & (Kilotons)
Table 112. Global Industrial Methanation Catalysts Market Size Forecast by Region (2025-2030) & (M USD)
Table 113. North America Industrial Methanation Catalysts Sales Forecast by Country (2025-2030) & (Kilotons)
Table 114. North America Industrial Methanation Catalysts Market Size Forecast by Country (2025-2030) & (M USD)
Table 115. Europe Industrial Methanation Catalysts Sales Forecast by Country (2025-2030) & (Kilotons)
Table 116. Europe Industrial Methanation Catalysts Market Size Forecast by Country (2025-2030) & (M USD)
Table 117. Asia Pacific Industrial Methanation Catalysts Sales Forecast by Region (2025-2030) & (Kilotons)
Table 118. Asia Pacific Industrial Methanation Catalysts Market Size Forecast by Region (2025-2030) & (M USD)
Table 119. South America Industrial Methanation Catalysts Sales Forecast by Country (2025-2030) & (Kilotons)
Table 120. South America Industrial Methanation Catalysts Market Size Forecast by Country (2025-2030) & (M USD)
Table 121. Middle East and Africa Industrial Methanation Catalysts Consumption Forecast by Country (2025-2030) & (Units)
Table 122. Middle East and Africa Industrial Methanation Catalysts Market Size Forecast by Country (2025-2030) & (M USD)
Table 123. Global Industrial Methanation Catalysts Sales Forecast by Type (2025-2030) & (Kilotons)
Table 124. Global Industrial Methanation Catalysts Market Size Forecast by Type (2025-2030) & (M USD)
Table 125. Global Industrial Methanation Catalysts Price Forecast by Type (2025-2030) & (USD/Ton)
Table 126. Global Industrial Methanation Catalysts Sales (Kilotons) Forecast by Application (2025-2030)
Table 127. Global Industrial Methanation Catalysts Market Size Forecast by Application (2025-2030) & (M USD)
List of Figures
Figure 1. Product Picture of Industrial Methanation Catalysts
Figure 2. Data Triangulation
Figure 3. Key Caveats
Figure 4. Global Industrial Methanation Catalysts Market Size (M USD), 2019-2030
Figure 5. Global Industrial Methanation Catalysts Market Size (M USD) (2019-2030)
Figure 6. Global Industrial Methanation Catalysts Sales (Kilotons) & (2019-2030)
Figure 7. Evaluation Matrix of Segment Market Development Potential (Type)
Figure 8. Evaluation Matrix of Segment Market Development Potential (Application)
Figure 9. Evaluation Matrix of Regional Market Development Potential
Figure 10. Industrial Methanation Catalysts Market Size by Country (M USD)
Figure 11. Industrial Methanation Catalysts Sales Share by Manufacturers in 2023
Figure 12. Global Industrial Methanation Catalysts Revenue Share by Manufacturers in 2023
Figure 13. Industrial Methanation Catalysts Market Share by Company Type (Tier 1, Tier 2 and Tier 3): 2023
Figure 14. Global Market Industrial Methanation Catalysts Average Price (USD/Ton) of Key Manufacturers in 2023
Figure 15. The Global 5 and 10 Largest Players: Market Share by Industrial Methanation Catalysts Revenue in 2023
Figure 16. Evaluation Matrix of Segment Market Development Potential (Type)
Figure 17. Global Industrial Methanation Catalysts Market Share by Type
Figure 18. Sales Market Share of Industrial Methanation Catalysts by Type (2019-2024)
Figure 19. Sales Market Share of Industrial Methanation Catalysts by Type in 2023
Figure 20. Market Size Share of Industrial Methanation Catalysts by Type (2019-2024)
Figure 21. Market Size Market Share of Industrial Methanation Catalysts by Type in 2023
Figure 22. Evaluation Matrix of Segment Market Development Potential (Application)
Figure 23. Global Industrial Methanation Catalysts Market Share by Application
Figure 24. Global Industrial Methanation Catalysts Sales Market Share by Application (2019-2024)
Figure 25. Global Industrial Methanation Catalysts Sales Market Share by Application in 2023
Figure 26. Global Industrial Methanation Catalysts Market Share by Application (2019-2024)
Figure 27. Global Industrial Methanation Catalysts Market Share by Application in 2023
Figure 28. Global Industrial Methanation Catalysts Sales Growth Rate by Application (2019-2024)
Figure 29. Global Industrial Methanation Catalysts Sales Market Share by Region (2019-2024)
Figure 30. North America Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 31. North America Industrial Methanation Catalysts Sales Market Share by Country in 2023
Figure 32. U.S. Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 33. Canada Industrial Methanation Catalysts Sales (Kilotons) and Growth Rate (2019-2024)
Figure 34. Mexico Industrial Methanation Catalysts Sales (Units) and Growth Rate (2019-2024)
Figure 35. Europe Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 36. Europe Industrial Methanation Catalysts Sales Market Share by Country in 2023
Figure 37. Germany Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 38. France Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 39. U.K. Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 40. Italy Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 41. Russia Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 42. Asia Pacific Industrial Methanation Catalysts Sales and Growth Rate (Kilotons)
Figure 43. Asia Pacific Industrial Methanation Catalysts Sales Market Share by Region in 2023
Figure 44. China Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 45. Japan Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 46. South Korea Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 47. India Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 48. Southeast Asia Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 49. South America Industrial Methanation Catalysts Sales and Growth Rate (Kilotons)
Figure 50. South America Industrial Methanation Catalysts Sales Market Share by Country in 2023
Figure 51. Brazil Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 52. Argentina Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 53. Columbia Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 54. Middle East and Africa Industrial Methanation Catalysts Sales and Growth Rate (Kilotons)
Figure 55. Middle East and Africa Industrial Methanation Catalysts Sales Market Share by Region in 2023
Figure 56. Saudi Arabia Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 57. UAE Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 58. Egypt Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 59. Nigeria Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 60. South Africa Industrial Methanation Catalysts Sales and Growth Rate (2019-2024) & (Kilotons)
Figure 61. Global Industrial Methanation Catalysts Sales Forecast by Volume (2019-2030) & (Kilotons)
Figure 62. Global Industrial Methanation Catalysts Market Size Forecast by Value (2019-2030) & (M USD)
Figure 63. Global Industrial Methanation Catalysts Sales Market Share Forecast by Type (2025-2030)
Figure 64. Global Industrial Methanation Catalysts Market Share Forecast by Type (2025-2030)
Figure 65. Global Industrial Methanation Catalysts Sales Forecast by Application (2025-2030)
Figure 66. Global Industrial Methanation Catalysts Market Share Forecast by Application (2025-2030)

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