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Gas Separation Membranes Market Analysis | 2023-2028
Gas Separation Membranes Market Size, Share, Trends, Forecast, & Growth Analysis: 2023-2028
Gas Separation Membranes Market is segmented by Material Type (Polyimide & Polyaramide, Polysulfone, Cellulose Acetate, and Others), by Application Type (Nitrogen Generation & Oxygen Enrichment, Hydrogen Recovery, and Carbon Dioxide Removal), and by Region (North America, Europe, Asia-Pacific, and Rest of the World).
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Gas separation membranes are mainly an interphase that is used in separating gases from a mixture. Gas Separation Membranes can be made up of polyimide & polyaramide, polysulfone, cellulose acetate, and others. Nitrogen generation & Oxygen enrichment, hydrogen recovery, and carbon dioxide removal are some of the application areas where gas separation membranes are used.
The gas separation membranes market was estimated at USD 1.02 billion in 2022.
The gas separation membranes market is likely to reach USD 1.52 billion in 2028.
The gas separation membranes market is likely to grow at a CAGR of 6.96% during 2023-2028.
In terms of regions, Asia-Pacific is expected to be the largest market for gas separation membranes in the coming five years.
Some of the gas separation membrane manufacturers are UBE Industries Ltd., Air Liquide Advanced Separations LLC, Air Products and Chemicals Inc., Generon Igs Inc., Honeywell Uop LLC, Fujifilm Manufacturing Europe B.V., Schlumberger Ltd., Parker-Hannifin Corporation, DIC Corporation, and Membrane Technology and Research Inc.
The polyimide & polyaramide segment dominated the market in 2022, owing to its remarkable properties, such as thermal stability and selectivity.
Gas separation membranes are employed to isolate and sanitize a specific component from the rest of the vapor mixture or the rest of the gas. Gas separation membrane technology is extensively used for gas processing applications in industries, such as petrochemical, chemical, and manufacturing. Growing demand from these industries drives the market for gas separation membranes globally.