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Gas Separation Membrane Market Research Report Information By Material Type (Polyimide & Polyamide, Polysulfide, Cellulose Acetate, Others), By Application (Nitrogen Generation & Oxygen Enrichment, Hydrogen Recovery, Carbon Dioxide Removal, Others) And By Region (North America, Europe, Asia-Pacific, And Rest Of The World) โ€“ Market Forecast Till 2032.


ID: MRFR/CnM/5727-HCR | 140 Pages | Author: Chitranshi Jaiswal| December 2024

Gas Separation Market Segmentation


Gas Separation Membrane Material Type Outlook (USD Billion, 2019-2030)




  • Polyimide & Polyamide




  • Polysulfide




  • Cellulose Acetate




  • Others




Gas Separation Membrane Application Outlook (USD Billion, 2019-2030)




  • NITROGEN GENERATION & OXYGEN ENRICHMENT




  • Hydrogen Recovery




  • Carbon Dioxide Removal




  • Air dehydration




  • Others




Gas Separation Membrane Regional Outlook (USD Billion, 2019-2030)




  • North America Outlook (USD Billion, 2019-2030)




    • North America Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • North America Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • US Outlook (USD Billion, 2019-2030)




    • US Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • US Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • CANADA Outlook (USD Billion, 2019-2030)




    • CANADA Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • CANADA Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others








  • Europe Outlook (USD Billion, 2019-2030)




    • Europe Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Europe Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Germany Outlook (USD Billion, 2019-2030)




    • Germany Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Germany Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • France Outlook (USD Billion, 2019-2030)




    • France Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • France Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • UK Outlook (USD Billion, 2019-2030)




    • UK Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • UK Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • ITALY Outlook (USD Billion, 2019-2030)




    • ITALY Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • ITALY Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • SPAIN Outlook (USD Billion, 2019-2030)




    • Spain Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Spain Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Rest Of Europe Outlook (USD Billion, 2019-2030)




    • REST OF EUROPE Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • REST OF EUROPE Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others








  • Asia-Pacific Outlook (USD Billion, 2019-2030)




    • Asia-Pacific Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Asia-Pacific Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • China Outlook (USD Billion, 2019-2030)




    • China Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • China Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Japan Outlook (USD Billion, 2019-2030)




    • Japan Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Japan Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • India Outlook (USD Billion, 2019-2030)




    • India Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • India Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Australia Outlook (USD Billion, 2019-2030)




    • Australia Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Australia Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Rest of Asia-Pacific Outlook (USD Billion, 2019-2030)




    • Rest of Asia-Pacific Low-Profile Additives by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Rest of Asia-Pacific Low-Profile Additives by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others








  • Rest of the World Outlook (USD Billion, 2019-2030)




    • Rest of the World Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Rest of the World Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Middle East Outlook (USD Billion, 2019-2030)


    • Middle East Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Middle East Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Africa Outlook (USD Billion, 2019-2030)




    • Africa Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Africa Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others






    • Latin America Outlook (USD Billion, 2019-2030)




    • Latin America Gas Separation Membrane by Material Type




      • Polyimide & Polyamide




      • Polysulfide




      • Cellulose Acetate




      • Others






    • Latin America Gas Separation Membrane by Application




      • NITROGEN GENERATION & OXYGEN ENRICHMENT




      • Hydrogen Recovery




      • Carbon Dioxide Removal




      • Air dehydration




      • Others







Research Methodology on Gas Separation Membrane Market


1. Introduction


The market research process follows an organized and professional approach to provide an accurate and reliable analysis of the Gas Separation Membrane market. The market research process explained below includes the necessary stages required to undertake useful and targeted research. This includes the information procurement process through secondary research, primary research, and approaches used such as bottom-up approach, top-down approach, factor analysis, time-series analysis and demand side and supply side data triangulation.


2. Primary Research


Primary research involves a more detailed and in-depth analysis of particular topics under study. This includes interviews and direct contact with market executives, experts, opinion makers, specialized third parties, and in-house functional professionals to gather qualitative and quantitative data relevant to the particular market under investigation. The overall objective is to obtain insight into the market that would provide in-depth knowledge and understanding of it.


Primary data collection consists of focus groups, interviews with industry experts, and surveys. The research team of experienced industry professionals travelled across the world to meet program participants. Data collected from the primary research such as interviews with industry executives are analyzed based on their relevance to the Marketโ€™s expected market trajectory for the Gas Separation Membrane and its segment.


3. Secondary Research


Secondary research is a reliable and important source of valid information. The secondary research process used in this project is an extensive and in-depth analysis which includes various resources such as reports from industry associations, investment journals, published research papers, industry publications, industry portals and various directories.


The secondary research provides pertinent insight into the Global Gas Separation Membrane Industry in terms of global market size and estimation, growth drivers, market segmentation analysis, market share breakdown, key players, regulatory framework, industry trends and policies, competitive landscape analysis, and geographic analysis.


4. Data Triangulation


Data triangulation involves analyzing data from different sources and perspectives to validate different viewpoints and areas of analysis. The information gathered from the primary research is triangulated with the data obtained from the secondary research. This helps to enrich the insights obtained from the primary research and enables a comprehensive and reliable market research report.


Data triangulation for this report includes a supply-side and demand-side approach. The demand-side analysis includes technical data from industry experts, industry executives, distributors/retailers, end users, and government agencies; while the supply-side approach includes an in-depth analysis of production, manufacturing, distribution, channels, and supply chain of the Gas Separation Membrane.


5. Time-series Analysis


The time-series analysis technique is used to analyze the historical and actual data to understand the trend and dynamics of a market. This method of analysis allows the research analyst to analyze the historic data of a market to determine the market growth over a period which helps in forecasting future projections.


The time-series analysis conducted for the Gas Separation Membrane market report takes into consideration various factors such as market penetration, pricing strategy, competitive landscape, and pricing strategy in order to understand the marketโ€™s present and future market potential.


6. Factor Analysis


The factor analysis technique is used to identify the key factors that are influencing the market. This method helps to understand the correlations between different market variables. The factor analysis conducted for the Global Gas Separation Membrane Industry includes analyzing the various macro and micro-economic factors such as the political situation, socioeconomic factors, industry policies, technological advancements, competitive landscape analysis, and environmental regulations in the respective countries.


7. Bottom-up and Top-down Approach


The bottom-up technique is used to estimate the market size and forecast and is based on the market share and market size of the individual segments that make up the market. The bottom-up approach has been followed for the Global Gas Separation Membrane Industry report.


The top-down approach is used to estimate the market size and forecast and is based on the market size of the parent market. This technique has also been employed in the present market report.


8. Conclusion


The overall research process used for the Gas Separation Membrane market covers a combination of qualitative and quantitative research techniques. The research team of experienced industry professionals travelled across the world to meet program participants, conducted focus groups, interviews with industry experts, and surveys to collect primary data, and utilized secondary resources such as reports from industry associations, published research papers, directories and industry portals to collect pertinent insights and valid facts.


The process also includes the use of data triangulation techniques such as supply-side and demand-side analysis, time-series analysis, factor analysis, and bottom-up and top-down approaches to validate the reported market trends and figures.


This market research process enables the research analyst to provide high-quality and reliable market research reports with the use of statistical data from authentic and valid sources. The objective was to deliver value to the stakeholders by providing a competent and accurate analysis of the Global Gas Separation Membrane Industry.

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TABLE OF CONTENTS

1 Executive Summary

2 Scope of the Report

2.1 Market Definition

2.2 Scope of the Study

2.3 List of Assumptions

2.4 Markets Structure

3 Market Research Methodology

3.1 Research Process

3.2 Primary Research

3.3 Secondary Research

3.4 Market Size Estimation

3.5 Forecast Model

4 Market Factor Analysis

4.1 Supply Chain Analysis

4.1.1 Raw Material Suppliers

4.1.2 Manufacturers/Producers

4.1.3 Distributors/Retailers/Wholesalers/E-Commerce Merchants

4.1.4 End Users

4.2 Porterโ€™s Five Forces Model

4.2.1 Threat of New Entrants

4.2.2 Intensity of Competitive Rivalry

4.2.3 Threat of Substitutes

4.2.4 Bargaining Power of Suppliers

4.2.5 Bargaining Power of Buyers

5 Market Dynamics of Global Gas Separation Membrane Market

5.1 Introduction

5.2 Drivers

5.3 Restraints

5.4 Opportunities

5.5 Challenges

6. Global Gas Separation Membrane Market, by Material Type

6.1 Introduction

6.2 Porous Inorganic

6.2.1 Market Estimates & Forecast, 2023-2030

6.2.2 Market Estimates & Forecast, by Region, 2023-2030

6.2.3 Metal

6.2.3.1. Market Estimates & Forecast, 2023-2030

6.2.3.2. Market Estimates & Forecast by Region, 2023-2030

6.2.4 Zeolite

6.2.4.1. Market Estimates & Forecast, 2023-2030

6.2.4.2. Market Estimates & Forecast by Region, 2023-2030

6.2.5 Ceramics

6.2.5.1. Market Estimates & Forecast, 2023-2030

6.2.5.2. Market Estimates & Forecast by Region, 2023-2030

6.2.6 Alumina

6.2.6.1. Market Estimates & Forecast, 2023-2030

6.2.6.2. Market Estimates & Forecast by Region, 2023-2030

6.3 Polymeric

6.3.1 Market Estimates & Forecast, 2023-2030

6.3.2 Market Estimates & Forecast, by Region, 2023-2030

6.3.3 Polyimide

6.3.3.1. Market Estimates & Forecast, 2023-2030

6.3.3.2. Market Estimates & Forecast by Region, 2023-2030

6.3.4 Cellulose Acetate

6.3.4.1. Market Estimates & Forecast, 2023-2030

6.3.4.2. Market Estimates & Forecast by Region, 2023-2030

6.3.5 Polysulfone

6.3.5.1. Market Estimates & Forecast, 2023-2030

6.3.5.2. Market Estimates & Forecast by Region, 2023-2030

6.4 Microporous Organic

6.4.1 Market Estimates & Forecast, 2023-2030

6.4.2 Market Estimates & Forecast, by Region, 2023-2030

6.5 Hybrid

6.5.1 Market Estimates & Forecast, 2023-2030

6.5.2 Market Estimates & Forecast, by Region, 2023-2030

6.6 Others

6.6.1 Market Estimates & Forecast, 2023-2030

6.6.2 Market Estimates & Forecast, by Region, 2023-2030

7. Global Gas Separation Membrane Market, by Application

7.1 Introduction

7.2 Industrial Gases Separation

7.2.1 Market Estimates & Forecast, 2023-2030

7.2.2 Market Estimates & Forecast, by Region, 2023-2030

7.3 CO2 Removal

7.3.1 Market Estimates & Forecast, 2023-2030

7.3.2 Market Estimates & Forecast, by Region, 2023-2030

7.4 Acid Gases Separation from Natural Gas

7.4.1 Market Estimates & Forecast, 2023-2030

7.4.2 Market Estimates & Forecast, by Region, 2023-2030

7.5 Hydrogen Recovery

7.5.1 Market Estimates & Forecast, 2023-2030

7.5.2 Market Estimates & Forecast, by Region, 2023-2030

7.6 Hydrocarbons Recovery

7.6.1 Market Estimates & Forecast, 2023-2030

7.6.2 Market Estimates & Forecast, by Region, 2023-2030

7.7 Others

7.7.1 Market Estimates & Forecast, 2023-2030

7.7.2 Market Estimates & Forecast, by Region, 2023-2030

8. Global Gas Separation Membrane Market, by End-Use Industry

8.1 Introduction

8.2 Chemical

8.2.1 Market Estimates & Forecast, 2023-2030

8.2.2 Market Estimates & Forecast, by Region, 2023-2030

8.3 Oil & Gas

8.3.1 Market Estimates & Forecast, 2023-2030

8.3.2 Market Estimates & Forecast, by Region, 2023-2030

8.4 Electric Power

8.4.1 Market Estimates & Forecast, 2023-2030

8.4.2 Market Estimates & Forecast, by Region, 2023-2030

8.5 Food & Beverages

8.5.1 Market Estimates & Forecast, 2023-2030

8.5.2 Market Estimates & Forecast, by Region, 2023-2030

8.6 Others

8.6.1 Market Estimates & Forecast, 2023-2030

8.6.2 Market Estimates & Forecast, by Region, 2023-2030

9. Global Gas Separation Membrane Market, by Region

9.1 Introduction

9.2 North America

9.2.1 Market Estimates & Forecast, 2023-2030

9.2.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.2.3 Market Estimates & Forecast, by Application, 2023-2030

9.2.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.2.5 US

9.2.5.1 Market Estimates & Forecast, 2023-2030

9.2.5.2 Market Estimates & Forecast, by Material Type 2023-2030

9.2.5.3 Market Estimates & Forecast, by Application, 2023-2030

9.2.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.2.6 Canada

9.2.6.1 Market Estimates & Forecast, 2023-2030

9.2.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.2.6.3 Market Estimates & Forecast, by Application, 2023-2030

9.2.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3 Europe

9.3.1 Market Estimates & Forecast, 2023-2030

9.3.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.5 Germany

9.3.5.1 Market Estimates & Forecast, 2023-2030

9.3.5.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.5.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.6 France

9.3.6.1 Market Estimates & Forecast, 2023-2030

9.3.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.6.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.7 Italy

9.3.7.1 Market Estimates & Forecast, 2023-2030

9.3.7.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.7.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.7.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.8 Spain

9.3.8.1 Market Estimates & Forecast, 2023-2030

9.3.8.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.8.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.8.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.9 UK

9.3.9.1 Market Estimates & Forecast, 2023-2030

9.3.9.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.9.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.9.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.10 Russia

9.3.10.1 Market Estimates & Forecast, 2023-2030

9.3.10.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.10.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.10.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.3.11 Rest of Europe

9.3.11.1 Market Estimates & Forecast, 2023-2030

9.3.11.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.3.11.3 Market Estimates & Forecast, by Application, 2023-2030

9.3.11.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4 Asia Pacific

9.4.1 Market Estimates & Forecast, 2023-2030

9.4.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.3 Market Estimates & Forecast, by Application, 2023-2030

9.4.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.5 China

9.4.5.1 Market Estimates & Forecast, 2023-2030

9.4.5.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.5.3 Market Estimates & Forecast by Application, 2023-2030

9.4.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.6 India

9.4.6.1 Market Estimates & Forecast, 2023-2030

9.4.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.6.3 Market Estimates & Forecast by Application, 2023-2030

9.4.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.7 South Korea

9.4.7.1 Market Estimates & Forecast, 2023-2030

9.4.7.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.7.3 Market Estimates & Forecast by Application, 2023-2030

9.4.7.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.8 Indonesia

9.4.8.1 Market Estimates & Forecast, 2023-2030

9.4.8.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.8.3 Market Estimates & Forecast by Application, 2023-2030

9.4.8.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.9 Australia & New Zealand

9.4.9.1 Market Estimates & Forecast, 2023-2030

9.4.9.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.9.3 Market Estimates & Forecast, by Application, 2023-2030

9.4.9.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.4.10 Rest of Asia-Pacific

9.4.10.1 Market Estimates & Forecast, 2023-2030

9.4.10.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.4.10.3 Market Estimates & Forecast, by Application, 2023-2030

9.4.10.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5 Middle East & Africa

9.5.1 Market Estimates & Forecast, 2023-2030

9.5.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.3 Market Estimates & Forecast by Application, 2023-2030

9.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5.5 Turkey

9.5.5.1 Market Estimates & Forecast, 2023-2030

9.5.5.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.5.3 Market Estimates & Forecast, by Application, 2023-2030

9.5.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5.6 Israel

9.5.6.1 Market Estimates & Forecast, 2023-2030

9.5.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.6.3 Market Estimates & Forecast, by Application, 2023-2030

9.5.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5.7 North Africa

9.5.7.1 Market Estimates & Forecast, 2023-2030

9.5.7.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.7.3 Market Estimates & Forecast, by Application, 2023-2030

9.5.7.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5.8 GCC

9.5.8.1 Market Estimates & Forecast, 2023-2030

9.5.8.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.8.3 Market Estimates & Forecast, by Application, 2023-2030

9.5.8.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.5.9 Rest of the Middle East & Africa

9.5.9.1 Market Estimates & Forecast, 2023-2030

9.5.9.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.5.9.3 Market Estimates & Forecast, by Application, 2023-2030

9.5.9.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.6 Latin America

9.6.1 Market Estimates & Forecast, 2023-2030

9.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.6.3 Market Estimates & Forecast, by Application, 2023-2030

9.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.6.5 Brazil

9.6.5.1 Market Estimates & Forecast, 2023-2030

9.6.5.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.6.5.3 Market Estimates & Forecast, by Application, 2023-2030

9.6.5.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.6.6 Argentina

9.6.6.1 Market Estimates & Forecast, 2023-2030

9.6.6.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.6.6.3 Market Estimates & Forecast, by Application, 2023-2030

9.6.6.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.6.7 Mexico

9.6.7.1 Market Estimates & Forecast, 2023-2030

9.6.7.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.6.7.3 Market Estimates & Forecast, by Application, 2023-2030

9.6.7.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

9.6.8 Rest of Latin America

9.6.8.1 Market Estimates & Forecast, 2023-2030

9.6.8.2 Market Estimates & Forecast, by Material Type, 2023-2030

9.6.8.3 Market Estimates & Forecast, by Application, 2023-2030

9.6.8.4 Market Estimates & Forecast, by End-Use Industry, 2023-2030

10. Competitive Landscape

10.1 Introduction

10.2 Market Key Strategies

10.3 Key Development Analysis

(Expansions/Mergers & Acquisitions/Joint Ventures/New Product Developments/Agreements/Investments)

11. Company Profiles

11.1 Air Products and Chemicals Inc

11.1.1 Company Overview

11.1.2 Financial Overview

11.1.3 Products Offered

11.1.4 Key Developments

11.1.5 SWOT Analysis

11.1.6 Key Strategies

11.2 Ube Industries Ltd

11.2.1 Company Overview

11.2.2 Financial Overview

11.2.3 Products Offered

11.2.4 Key Developments

11.2.5 SWOT Analysis

11.2.6 Key Strategies

11.3 Air Liquide Advanced Separation

11.3.1 Company Overview

11.3.2 Financial Overview

11.3.3 Products Offered

11.3.4 Key Developments

11.3.5 SWOT Analysis

11.3.6 Key Strategies

11.4 Schlumberger Limited

11.4.1 Company Overview

11.4.2 Financial Overview

11.4.3 Products Offered

11.4.4 Key Developments

11.4.5 SWOT Analysis

11.4.6 Key Strategies

11.5 Membrane Technology and Research Inc

11.5.1 Company Overview

11.5.2 Financial Overview

11.5.3 Products Offered

11.5.4 Key Developments

11.5.5 SWOT Analysis

11.5.6 Key Strategies

11.6 Evonik Industries AG

11.6.1 Company Overview

11.6.2 Financial Overview

11.6.3 Products Offered

11.6.4 Key Developments

11.6.5 SWOT Analysis

11.6.6 Key Strategies

11.7 FUJIFILM Manufacturing Europe BV

11.7.1 Company Overview

11.7.2 Financial Overview

11.7.3 Products Offered

11.7.4 Key Developments

11.7.5 SWOT Analysis

11.7.6 Key Strategies

11.8 Honeywell International Inc

11.8.1 Company Overview

11.8.2 Financial Overview

11.8.3 Products Offered

11.8.4 Key Developments

11.8.5 SWOT Analysis

11.8.6 Key Strategies

11.9 Generon IGS Inc

11.9.1 Company Overview

11.9.2 Financial Overview

11.9.3 Products Offered

11.9.4 Key Developments

11.9.5 SWOT Analysis

11.9.6 Key Strategies

11.10 DIC Corporation

11.10.1 Company Overview

11.10.2 Financial Overview

11.10.3 Products Offered

11.10.4 Key Developments

11.10.5 SWOT Analysis

11.10.6 Key Strategies

11.11 SRI International

11.11.1 Company Overview

11.11.2 Financial Overview

11.11.3 Products Offered

11.11.4 Key Developments

11.11.5 SWOT Analysis

11.11.6 Key Strategies

12. Conclusion

LIST OF TABLES

Table 1 Global Gas Separation Membrane Market, by Region, 2023-2030

Table 2 North America: Gas Separation Membrane Market, by Country, 2023-2030

Table 3 Europe: Gas Separation Membrane Market, by Country, 2023-2030

Table 4 Asia-Pacific: Gas Separation Membrane Market, by Country, 2023-2030

Table 5 Middle East & Africa: Gas Separation Membrane Market, by Country, 2023-2030

Table 6 Latin America: Gas Separation Membrane Market, by Country, 2023-2030

Table 7 Global Gas Separation Membrane Material Type Market, by Region, 2023-2030

Table 8 North America: Gas Separation Membrane Material Type Market, by Country, 2023-2030

Table 9 Europe: Gas Separation Membrane Material Type Market, by Country, 2023-2030

Table 10 Asia-Pacific: Gas Separation Membrane Material Type Market, by Country, 2023-2030

Table 11 Middle East & Africa: Gas Separation Membrane Material Type Market, by Country, 2023-2030

Table 12 Latin America: Gas Separation Membrane Material Type Market, by Country, 2023-2030

Table 13 Global Gas Separation Membrane Application Market, by Region, 2023-2030

Table 14 North America: Gas Separation Membrane Application Market, by Country, 2023-2030

Table 15 Europe: Gas Separation Membrane Application Market, by Country, 2023-2030

Table 16 Asia-Pacific: Gas Separation Membrane Application Market, by Country, 2023-2030

Table 17 Middle East & Africa: Gas Separation Membrane Application Market, by Country, 2023-2030

Table 18 Latin America: Gas Separation Membrane Application Market, by Country, 2023-2030

Table 19 Global Gas Separation Membrane End-Use Industry Market, by Region, 2023-2030

Table 20 North America: Gas Separation Membrane End-Use Industry Market, by Country, 2023-2030

Table 21 Europe: Gas Separation Membrane End-Use Industry Market, by Country, 2023-2030

Table 22 Asia-Pacific: Gas Separation Membrane End-Use Industry Market, by Country, 2023-2030

Table 23 Middle East & Africa: Gas Separation Membrane End-Use Industry Market, by Country, 2023-2030

Table 24 Latin America: Gas Separation Membrane End-Use Industry Market, by Country, 2023-2030

Table 25 Global Material Type Market, by Region, 2023-2030

Table 26 Global Application Market, by Region, 2023-2030

Table 27 Global End-Use Industry Market, by Region, 2023-2030

Table 28 North America: Gas Separation Membrane Market, by Country, 2023-2030

Table 29 North America: Gas Separation Membrane Market, by Material, 2023-2030

Table 30 North America: Gas Separation Membrane Market, by Application, 2023-2030

Table 31 North America: Gas Separation Membrane Market, by End-Use Industry, 2023-2030

Table 32 Europe: Gas Separation Membrane Market, by Country, 2023-2030

Table 33 Europe: Gas Separation Membrane Market, by Material, 2023-2030

Table 34 Europe: Gas Separation Membrane Market, by Application, 2023-2030

Table 35 Europe: Gas Separation Membrane Market, by End-Use Industry, 2023-2030

Table 36 Asia-Pacific: Gas Separation Membrane Market, by Country, 2023-2030

Table 37 Asia-Pacific: Gas Separation Membrane Market, by Material, 2023-2030

Table 38 Asia-Pacific: Gas Separation Membrane Market, by Application, 2023-2030

Table 39 Asia-Pacific: Gas Separation Membrane Market, by End-Use Industry, 2023-2030

Table 40 Middle East & Africa: Gas Separation Membrane Market, by Country, 2023-2030

Table 41 Middle East & Africa: Gas Separation Membrane Market, by Material, 2023-2030

Table 42 Middle East & Africa: Gas Separation Membrane Market, by Application, 2023-2030

Table 43 Middle East & Africa: Gas Separation Membrane Market, by End-Use Industry, 2023-2030

Table 44 Latin America: Gas Separation Membrane Market, by Country, 2023-2030

Table 45 Latin America: Gas Separation Membrane Market, by Material, 2023-2030

Table 46 Latin America: Gas Separation Membrane Market, by Application, 2023-2030

Table 47 Latin America: Gas Separation Membrane Market, by End-Use Industry, 2023-2030

LIST OF FIGURES

FIGURE 1 Global Gas Separation Membrane Market Segmentation

FIGURE 2 Forecast Research Methodology

FIGURE 3 Porterโ€™s Five Forces Analysis of Global Gas Separation Membrane Market

FIGURE 4 Value Chain/Supply Chain of Global Gas Separation Membrane Market

FIGURE 5 Share of Global Gas Separation Membrane Market, by Country, 2023 (%)

FIGURE 6 Global Gas Separation Membrane Market, 2023-2030

FIGURE 7 Global Gas Separation Membrane Market Size, by Material Type, 2023 (%)

FIGURE 8 Share of Global Gas Separation Membrane Market, by Material Type, 2023-2030

FIGURE 9 Global Gas Separation Membrane Market Size, by Application, 2023 (%)

FIGURE 10 Share of Global Gas Separation Membrane Market, by Application, 2023-2030

FIGURE 11 Global Gas Separation Membrane Market Size, by End-Use Industry, 2023 (%)

FIGURE 12 Share of Global Gas Separation Membrane Market, by End-Use Industry, 2023-2030

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