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Report explores the global pharmaceutical membrane filtration technologies market

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Report at Pharmaceutical Membrane Filtratio… Research Report

The global market for pharmaceutical membrane filtration technologies is expected to reach USD 9.2 billion by 2021, growing at a CAGR of 13.9%.

Membrane technology covers all industrial approaches for the passage of substances between two segments with the help of permeable membranes. In general, machine-driven separation processes for separating gaseous or liquid streams use membrane technology.

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Membrane separation processes function without heating and therefore, use less energy than straight thermal separation processes such as distillation, sublimation or crystallization. The separation process is purely physical and both segments (permeate and retentate) can be used.

The market growth is driven by the stringent environmental protocols and Good Manufacturing Practices (GMP) in the pharmaceutical industry. However, membrane fouling concerns and high capital investments for operations are the major challenges faced by the market.

Currently, North America holds the largest market share, followed by Europe. APAC is the fastest growing segment.

The global pharmaceutical membrane filtration technologies market can be segmented on the basis of technology (pressure-driven operations, concentration-driven operations, electric potential gradient operations, and temperature gradient operations), material type (polymeric membranes, non-polymeric membranes), structure type (microporous membranes, homogenous membranes, asymmetric membranes, electrically charged membranes, liquid membranes and others), application (cell harvesting, biomass recovery, sterilization, protein purification, virus removal, water management, adsorptive depth filtration and others), and geography.

Some of the key players in the market are: 
Alfa Laval 
GEA Group 
Koch Membrane Systems 
Merck Millipore 
Pall Corporation


What the Report Offers 
Market definition along with identification of key drivers and restraints for the market. 
Market analysis for the pharmaceutical membrane filtration technologies market, with region-specific assessments and competition analysis on a global and regional scale. 
Identification of factors instrumental in changing the market scenario, rising prospective opportunities and identification of key companies that can influence the market on a global and regional scale. 
Extensively researched competitive landscape section with profiles of major companies along with their strategic initiatives and market share. 
Identification and analysis of the macro and micro factors that affect the pharmaceutical membrane filtration technologies market on both global and regional scale. 
A comprehensive list of key market players along with the analysis of their current strategic interests and key financial information.

 Browse Complete Report at…ecasts-2017-2022 .

 Some points From TOC:

  1. Introduction 
    1.1 Report Description 
    1.2 Research Methodology
  2. Key Findings
  3. Executive Summary
  4. Market Dynamics 
    4.1 Market Segmentation 
    4.2 Market Drivers 
    4.2.1 Stringent Environmental Protocols Boosting the Market Growth 
    4.2.2 Good Manufacturing Practices (GMP) in Pharmaceutical Industry Adding to the Market Growth 
    4.3 Market Restraints 
    4.3.1 High capital required for Operations 
    4.3.2 Membrane Fouling
  5. Global Market Segmentation 
    5.1 By Technology 
    5.1.1 Pressure Driven Operations Ultrafiltration Reverse Osmosis Nanofiltration Microfiltration Others 
    5.1.2 Concentration Driven Operations Dialysis Pervaporation Forward Osmosis Artificial Lung Gas Separation Others 
    5.1.3 Electric Potential Gradient Operations Electrodialysis Membrane Electrolysis Electro Deionization Electrofiltration Others 
    5.1.4 Temperature Gradient Operations Membrane Distillation Others 
    5.2 By Material Type 
    5.2.1 Polymeric Membranes 
    5.2.2 Non-Polymeric Membranes 
    5.3 By Structure 
    5.3.1 Microporous Membranes 
    5.3.2 Homogenous Membranes 
    5.3.3 Asymmetric Membranes 
    5.3.4 Electrically Charged Membranes 
    5.3.5 Liquid Membranes 
    5.3.6 Others 
    5.4 By Application 
    5.4.1 Cell Harvesting 
    5.4.2 Biomass Recovery 
    5.4.3 Sterilization 
    5.4.4 Protein Purification 
    5.4.5 Virus Removal 
    5.4.6 Water Management 
    5.4.7 Adsorptive Depth Filtration 
    5.4.8 Others 
    5.5 By Geography 
    5.5.1 North America US Canada Mexico 
    5.5.2 Europe UK Germany France Spain Italy Rest of Europe 
    5.5.3 Asia-Pacific China Japan India South Korea Rest of Asia-Pacific 
    5.5.4 Rest of the World


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