Market Summary: The global membrane separation technology market is poised to witness a compound annual growth rate (CAGR) of 10.5%, expanding from USD 17.70 billion in 2019 to USD 43.14 billion in 2027. The driving forces behind this growth include the escalating demand for clean drinking water, environmental initiatives to monitor carbon emissions and pollutants, improved living standards, increased disposable income, and heightened health awareness. The surge in population, leading to water resource depletion and contamination of surface and groundwater bodies, fuels the demand for wastewater treatment technologies and, consequently, membrane separation technology.
The market for membrane separation technology is bolstered by factors such as porosity, resilience, permeability, stability, and selectivity. The rising demand for clean processed drinking water and government-imposed regulations promoting clean drinking water contribute to the widespread adoption of membrane separation technology. The continuous and extensive development of the oil & gas industry creates opportunities for business.
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Major companies are engaging in research and development (R&D) projects in collaboration with research institutes to enhance membrane manufacturing technology. The potential utilization of 3D printing techniques allows for the production of membranes in various shapes and designs with greater precision compared to existing methods.
The primary driver of membrane separation technology demand is the substantial water requirement for industrial growth and human life. The increasing demand for the biopharmaceutical industry, coupled with stringent environmental regulations and sustainability policies, also contributes to the market's growth in the forecast period.
A significant proportion of contemporary membranes are crafted from polymeric materials such as Polyethersulfone (PES), Polyvinylidene Fluoride (PVDF), Polyethylene (PE), Polyacrylonitrile (PAN), and Polypropylene (PP). Ceramic membranes are gaining acceptance due to their chemically inert nature and ability to operate at high temperatures.
Technology Outlook: In the membrane separation technology market, reverse osmosis is expected to maintain dominance and exhibit growth over the forecast period. The membranes utilized in separation technologies typically have pores smaller than one nanometer and are employed in the production of ultrapure water, treatment of landfill leachates, and desalination of seawater. The ultrafiltration process, another popular category, experiences high demand due to its single-membrane filtration process effectively blocking viruses, bacteria, and contaminants.
Application Outlook: Water treatment engineering has gained global popularity, with companies striving to implement sustainable and efficient water treatment methods, leading to increased demand for membrane separation technology. The water treatment segment holds the largest market share and is anticipated to expand further. The pharmaceutical and biopharmaceutical industries witness growing demand for membrane separation technologies, especially for particle and fluid separation. The pharmaceutical application segment is projected to register a significant compound annual growth rate (CAGR) over the forecast period.
Membrane separation technology plays a crucial role in extracting useful solvents and catalysts used in the synthesis of various pharmaceutical/intermediate compounds. It is also utilized in the production of Purified Water (PW), Highly Purified Water (HPW), and Water for Injection (WFI), essential for various pharmaceutical formulations.
Regional Outlook: The Asia-Pacific region is expected to dominate the membrane separation technology market during the forecast period, driven by increasing demand in developing countries due to growing awareness of consuming purified water, rising water pollution, and environmental concerns resulting from industrial growth in sectors such as mining, chemicals, and metal processing.
North America's market is poised for a remarkable compound annual growth rate (CAGR) owing to government initiatives promoting sustainable development and strict regulations controlling the disposal of wastewater from municipal sources. The pharmaceutical industry in North America is anticipated to experience rapid growth due to extensive research and development activities in healthcare products.
Market-O-Nomics: A significant trend in membrane separation technology is the increasing demand for reverse osmosis technology globally due to its effectiveness in eliminating contaminants from water. Purified water's pivotal role in pharmaceutical and chemical industry processes makes reverse osmosis and other membrane technologies critical. Filtered water plays a prominent role in the Food & Beverages industry, where membrane separation technology is commonly used for water purification. In developing countries, the adoption of purification technologies is increasing to reduce the use of polluted water, a severe health hazard.
Companies Profiled: Key players in the market include The 3M Company, The Dow Chemical Company, Suez Water Technologies & Solutions, Merck Millipore, Toray Industries, Asahi Kasei Corporation, Koch Membrane Systems Inc., Danaher Corporation, Hydranautics, and Pentair plc. These companies are actively involved in R&D projects, leading to the development of groundbreaking products. Major players plan to expand their product range through mergers and acquisitions of small and medium-scale businesses.
Start-ups: The industry witnesses numerous opportunities for development, with various companies entering the sector offering creative products and services. Examples include Centre for Process, Cerahelix, Unisieve, and Blue-tec. One notable start-up, Cerahelix, employs a patented method called helix NFM, utilizing DNA to create a nano-ceramic coating for faster, high-purity filtration under low pressure and adverse conditions.
Deal Landscape: Mergers and acquisitions play a crucial role in the membrane separation technology industry. Key market players, along with companies operating in the market, engage in these activities to strengthen their positions.
In May 2018, Kuraray reached a binding acquisition agreement to absorb Calgon Carbon, aiming to enhance its global footprint in filtration media.
In January 2020, DuPont explored possible mergers and acquisitions with firms such as OxyMem Ltd., Memcor, Desalitech, and BASF SE, contributing to its water treatment and technology portfolio.
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