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Global Single-use Filtration Assemblies Market Report

RA02100

Global Single-use Filtration Assemblies Market by Type (Membrane Filtration, Centrifugation, Depth Filtration, and Others), Application (Pharmaceuticals Manufacturing, Laboratory Use, and Bioprocessing/Biopharmaceuticals), Product (Filters, Cartridges, Membranes, Cassettes, Manifold, Syringes, and Others), and Region (North America, Europe, Asia-Pacific, and LAMEA): Opportunity Analysis and Industry Forecast, 2023-2032

RA02100

Pages: 280

Aug 2023

Single-use Filtration Assemblies Overview

Single-use filtration assemblies are disposable filtration systems that are usually used in a variety of industries, including the food and beverage, pharmaceutical, biotechnology, and water treatment sectors. By doing away with the requirement for cleaning and validation that come with reusable filtering systems, these assemblies offer a practical and affordable alternative for filtration processes. A filter cartridge or capsule, a housing, tubing, connectors, and occasionally a pump or pressure source are all common parts of single-use filtering assemblies. The filtration media, which can be formed of substances like polyether sulfone (PES), polypropylene (PP), or cellulose, is included in the filter cartridge or capsule.

Global Single-use Filtration Assemblies Market Analysis

The global single-use filtration assemblies market size was $3,034.5 million in 2022 and is predicted to grow with a CAGR of 18.4%, by generating a revenue of $16,354.7 million by 2032.

COVID-19 Impact on Global Single-use Filtration Assemblies Market

The COVID-19 pandemic has had a mixed impact on the single-use filtration assemblies market. Early in 2020, the COVID-19 pandemic broke out, having a significant effect on the worldwide healthcare and life sciences industries. An increase in demand for single-use filtering assembly was brought about by the urgent need for medicines, vaccinations, and diagnostic tests. To assure the safety and effectiveness of the products, complex filtration procedures were needed during the development and production of COVID-19 vaccines and medicines. These procedures relied heavily on single-use filter assemblies, which offered sterile filtration and eliminated impurities.

With continual technical improvements, the market for single-use filter assemblies is expected to rise. Filtration efficiency, compatibility, and usability are predicted to be improved by innovations in filter material, housing designs, and connectivity options. It's possible that in the future more advanced filtering systems with real-time monitoring capabilities may emerge.

Increasing Demand for Biopharmaceuticals to Drive the Market Growth

Single-use filtration assemblies have many benefits for bioprocessing, such as flexibility, decreased risk of contamination, and quick turnaround times. The introduction of single-use filtering assemblies in this industry is being driven by the rising demand for biopharmaceuticals. Compared to reusable filtering systems, single-use filtration assemblies save money and time.  Cleaning, validation, and maintenance procedures for reusable systems are eliminated, leading in less downtime, cheaper labour costs, and less demand for cleaning supplies and water. Thus, the streamlined workflow and faster changeover times result in increased operational efficiency.

Flow Rate Limitations to Restrain Market Growth

Single-use filtration assemblies might only be partially compatible with some potent substances, solvents, or harsh process conditions. Specific materials or designs may not be easily accessible in the single-use format for some filtration applications. This may limit the adoption of disposable systems in particular fields or uses. Single-use filtration assemblies could have lower flow rates than some reusable filtration systems. Disposable solutions might not provide the same efficiency in terms of filtration speed, which might be a constraint in operations that call for high throughput or quick filtration.

Stringent Regulatory Standards to Drive Excellent Opportunities

Regulatory organisations continue to uphold strict requirements for the safety and calibre of products. Because they are pre-sterilized and have traceability, single-use filtration assembly aid in meeting these legal criteria. Adoption of disposable systems will be driven by the emphasis on compliance, particularly in sectors with stringent regulatory supervision. Single-use filtering assemblies are perfect for bioprocessing applications because they are flexible, scalable, and have a lower risk of contamination. The market for single-use filtering assembly will increase along with the biopharmaceutical industry. Customization options for single-use filtration assemblies are available to satisfy certain process requirements. For various applications, the filtration performance can be optimised by changing the filter material, pore size, and housing configurations. Manufacturers will have an advantage in the market if they can offer modular designs and easily adaptable single-use filtration systems.

Global Single-use Filtration Assemblies Market Share, by Type, 2022

The membrane filtration sub-segment accounted for the highest share in 2022. By eliminating pollutants such as germs, contaminants, and particles from fluids, membrane filtration gives excellent filtration efficiency. Producing high-quality products is made possible by membranes' capacity to offer accurate and dependable filtration in sectors including medicines, biotechnology, and food & beverage. For sterile filtering in important applications, membrane filtration is frequently utilised. The elimination of bacteria, viruses, and other pathogens is guaranteed by single-use filtering assemblies with sterile membranes, retaining the sterility of the finished product. This is crucial for aseptic manufacturing procedures in the pharmaceutical industry and other sectors.

Global Single-use Filtration Assemblies Market Share, by Application, 2022

The bioprocessing/biopharmaceuticals sub-segment accounted for the highest market size in 2022. Single-use filtration assemblies provide process designers and developers additional flexibility. These solutions make it simple to adjust to changing process needs. Bioprocessing is usually associated with a diverse range of products and batch sizes. Because the assemblies are disposable, significant cleaning and validation between runs are not required, which speeds up process development and optimisation.

Global Single-use Filtration Assemblies Market Share, by Product, 2022

The filters sub-segment accounted for the highest market size in 2022. To ensure excellent filtering efficiency and product quality, filters are used to remove particles, bacteria, and pollutants from fluids. For reliable and consistent filtration performance in a range of industries, including water treatment, food & beverage, manufacturing, biotechnology, pharmaceuticals, and more, single-use filtration assemblies use filters with precise pore sizes and high retention capacities. Filters are required for sterile filtration in delicate applications, particularly in the biopharmaceutical and food industries. Bacteria, viruses, and other pathogens are removed using single-use filtration assemblies with sterile filters, ensuring the sterility and safety of the finished product. During processing and packing activities, filters are essential for preserving aseptic conditions.

 

Global Single-use Filtration Assemblies Market Share, by Region, 2022

The North America single-use filtration assemblies market generated the highest revenue in 2022. The greatest market for single-use filtration assemblies is in the North America region. In North America, the biopharmaceutical industry is flourishing and well-established. There are numerous biopharmaceutical companies in the region engaged in the development, manufacture, and research of biologics, vaccines, and other state-of-the-art medications. By offering effective and dependable filtration solutions for crucial procedures including cell culture, clarity, and sterile filtration, single-use filtration assemblies play a crucial role in this business. In North America, the use of single-use filtering assemblies in the food and beverage industries is growing. The filtration of sauces, drinks, dairy products, and other liquid food items is one procedure that makes use of these assemblies. To maintain the required level of product quality, extend the shelf life, and guarantee product safety, single-use filtration systems are greatly utilised in this region.

Competitive Scenario in the Global Single-use Filtration Assemblies Market

Product development and geographic expansion are the key strategies opted by the major players in the global single-use filtration assemblies market. For instance, Thermo Fisher Scientific built a new single-use production facility in Utah, United States, in April 2022. Some of the leading single-use filtration assemblies market players are Sartorius AG, 3M Purification, Danaher, Repligen Corporation, Merck Millipore, Thermo Fisher Scientific, Inc., Cellab, Medela, DrM, Dr. Mueller AG, and MEISSNER FILTRATION PRODUCTS, INC.

Aspect

Particulars

  Historical Market Estimations

  2021

  Base Year for Market Estimation

  2022

  Forecast Timeline for Market Projection

  2023-2032

  Geographical Scope

  North America, Europe, Asia-Pacific, and        LAMEA

  Segmentation by Type

  • Membrane Filtration
  • Centrifugation
  • Depth Filtration
  • Others

  Segmentation by Application

  • Pharmaceuticals Manufacturing
  • Laboratory Use
  • Bioprocessing/Biopharmaceuticals

  Segmentation by Product

  • Filters
  • Cartridges
  • Membranes
  • Cassettes
  • Manifold
  • Syringes
  • Others

  Key Companies Profiled

  • Sartorius AG
  • 3M Purification
  • Danaher
  • Repligen Corporation
  • Merck Millipore
  • Thermo Fisher Scientific, Inc.
  • Cellab
  • Medela
  • DrM, Dr. Mueller AG
  • MEISSNER FILTRATION PRODUCTS, INC.

    Frequently Asked Questions
     

    A. The size of the single-use filtration assemblies market was over $3,034.5 million in 2022 and is expected to expand at a compound annual growth rate (CAGR) of 18.4% during the forecast period.

    A. Danaher and Cellab are some of the key players in the global single-use filtration assemblies market.

    A. The North America region possesses great investment opportunities for investors to witness the most promising growth in the future.

    A. Product development and geographic expansion are the two key strategies opted by the operating companies in this market.

    A. Danaher and Cellab are the companies investing more on R&D activities for developing new products and technologies.

    • 1. RESEARCH METHODOLOGY

      • 1.1. Desk Research

      • 1.2. Real time insights and validation

      • 1.3. Forecast model

      • 1.4. Assumptions and forecast parameters

      • 1.5. Market size estimation

        • 1.5.1. Top-down approach

        • 1.5.2. Bottom-up approach

    • 2. REPORT SCOPE

      • 2.1. Market definition

      • 2.2. Key objectives of the study

      • 2.3. Report overview

      • 2.4. Market segmentation

      • 2.5. Overview of the impact of COVID-19 on Global Single-Use Filtration Assemblies Market

    • 3. EXECUTIVE SUMMARY

    • 4. MARKET OVERVIEW

      • 4.1. Introduction

      • 4.2. Growth impact forces

        • 4.2.1. Drivers

        • 4.2.2. Restraints

        • 4.2.3. Opportunities

      • 4.3. Market value chain analysis

        • 4.3.1. List of raw material suppliers

        • 4.3.2. List of manufacturers

        • 4.3.3. List of distributors

      • 4.4. Innovation & sustainability matrices

        • 4.4.1. Technology matrix

        • 4.4.2. Regulatory matrix

      • 4.5. Porter’s five forces analysis

        • 4.5.1. Bargaining power of suppliers

        • 4.5.2. Bargaining power of consumers

        • 4.5.3. Threat of substitutes

        • 4.5.4. Threat of new entrants

        • 4.5.5. Competitive rivalry intensity

      • 4.6. PESTLE analysis

        • 4.6.1. Political

        • 4.6.2. Economical

        • 4.6.3. Social

        • 4.6.4. Technological

        • 4.6.5. Environmental

      • 4.7. Impact of COVID-19 on Single-Use Filtration Assemblies Market

        • 4.7.1. Pre-covid market scenario

        • 4.7.2. Post-covid market scenario

    • 5. Single-Use Filtration Assemblies Market, By Product

      • 5.1. Overview

      • 5.2 Filters

        • 5.2.1 Definition, key trends, growth factors, and opportunities

        • 5.2.2 Market size analysis, by region, 2020-2027

        • 5.2.3 Market share analysis, by country, 2020-2027

      • 5.3 Cartridges

        • 5.3.1 Definition, key trends, growth factors, and opportunities

        • 5.3.2 Market size analysis, by region, 2020-2027

        • 5.3.3 Market share analysis, by country, 2020-2027

      • 5.4 Membranes

        • 5.4.1 Definition, key trends, growth factors, and opportunities

        • 5.4.2 Market size analysis, by region, 2020-2027

        • 5.4.3 Market share analysis, by country, 2020-2027

      • 5.5 Manifold

        • 5.5.1 Definition, key trends, growth factors, and opportunities

        • 5.5.2 Market size analysis, by region, 2020-2027

        • 5.5.3 Market share analysis, by country, 2020-2027

      • 5.6 Cassettes

        • 5.6.1 Definition, key trends, growth factors, and opportunities

        • 5.6.2 Market size analysis, by region, 2020-2027

        • 5.6.3 Market share analysis, by country, 2020-2027

      • 5.7 Syringes

        • 5.7.1 Definition, key trends, growth factors, and opportunities

        • 5.7.2 Market size analysis, by region, 2020-2027

        • 5.7.3 Market share analysis, by country, 2020-2027

      • 5.8 Others

        • 5.8.1 Definition, key trends, growth factors, and opportunities

        • 5.8.2 Market size analysis, by region, 2020-2027

        • 5.8.3 Market share analysis, by country, 2020-2027

      • 5.9 Research Dive Exclusive Insights

        • 5.9.1 Market attractiveness

        • 5.9.2 Competition heatmap

    • 6. Single-Use Filtration Assemblies Market, By Distribution Channel

      • 6.1. Overview

      • 6.2 Membrane Filtration

        • 6.2.1 Definition, key trends, growth factors, and opportunities

        • 6.2.2 Market size analysis, by region, 2020-2027

        • 6.2.3 Market share analysis, by country, 2020-2027

      • 6.3 Depth Filtration

        • 6.3.1 Definition, key trends, growth factors, and opportunities

        • 6.3.2 Market size analysis, by region, 2020-2027

        • 6.3.3 Market share analysis, by country, 2020-2027

      • 6.4 Centrifugation

        • 6.4.1 Definition, key trends, growth factors, and opportunities

        • 6.4.2 Market size analysis, by region, 2020-2027

        • 6.4.3 Market share analysis, by country, 2020-2027

      • 6.5 Others

        • 6.5.1 Definition, key trends, growth factors, and opportunities

        • 6.5.2 Market size analysis, by region, 2020-2027

        • 6.5.3 Market share analysis, by country, 2020-2027

      • 6.6 Research Dive Exclusive Insights

        • 6.6.1 Market attractiveness

        • 6.6.2 Competition heatmap

    • 7. Single-Use Filtration Assemblies Market, By Device Type

      • 7.1. Overview

      • 7.2 Pharmaceuticals Manufacturing Market

        • 7.2.1 Definition, key trends, growth factors, and opportunities

        • 7.2.2 Market size analysis, by region, 2020-2027

        • 7.2.3 Market share analysis, by country, 2020-2027

      • 7.3 Bioprocessing/Biopharmaceuticals Market

        • 7.3.1 Definition, key trends, growth factors, and opportunities

        • 7.3.2 Market size analysis, by region, 2020-2027

        • 7.3.3 Market share analysis, by country, 2020-2027

      • 7.4 Laboratory Use

        • 7.4.1 Definition, key trends, growth factors, and opportunities

        • 7.4.2 Market size analysis, by region, 2020-2027

        • 7.4.3 Market share analysis, by country, 2020-2027

      • 7.5 Research Dive Exclusive Insights

        • 7.5.1 Market attractiveness

        • 7.5.2 Competition heatmap

    • 8. Single-Use Filtration Assemblies Market, By Region

      • 8.1 North America

        • 8.1.1 U.S

          • 8.1.1.1 Market size analysis, By Product, 2020-2027

          • 8.1.1.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.1.1.3 Market size analysis, By Device Type, 2020-2027

        • 8.1.2 Canada

          • 8.1.2.1 Market size analysis, By Product, 2020-2027

          • 8.1.2.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.1.2.3 Market size analysis, By Device Type, 2020-2027

        • 8.1.3 Mexico

          • 8.1.3.1 Market size analysis, By Product, 2020-2027

          • 8.1.3.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.1.3.3 Market size analysis, By Device Type, 2020-2027

        • 8.1.4 Research Dive Exclusive Insights

          • 8.1.4.1 Market attractiveness

          • 8.1.4.2 Competition heatmap

      • 8.2 Europe

        • 8.2.1 Germany

          • 8.2.1.1 Market size analysis, By Product, 2020-2027

          • 8.2.1.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.1.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.2 UK

          • 8.2.2.1 Market size analysis, By Product, 2020-2027

          • 8.2.2.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.2.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.3 France

          • 8.2.3.1 Market size analysis, By Product, 2020-2027

          • 8.2.3.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.3.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.4 Spain

          • 8.2.4.1 Market size analysis, By Product, 2020-2027

          • 8.2.4.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.4.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.5 Italy

          • 8.2.5.1 Market size analysis, By Product, 2020-2027

          • 8.2.5.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.5.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.6 Rest of Europe

          • 8.2.6.1 Market size analysis, By Product, 2020-2027

          • 8.2.6.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.2.6.3 Market size analysis, By Device Type, 2020-2027

        • 8.2.7 Research Dive Exclusive Insights

          • 8.2.7.1 Market attractiveness

          • 8.2.7.2 Competition heatmap

      • 8.3 Asia-Pacific

        • 8.3.1 China

          • 8.3.1.1 Market size analysis, By Product, 2020-2027

          • 8.3.1.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.1.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.2 Japan

          • 8.3.2.1 Market size analysis, By Product, 2020-2027

          • 8.3.2.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.2.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.3 India

          • 8.3.3.1 Market size analysis, By Product, 2020-2027

          • 8.3.3.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.3.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.4 Australia

          • 8.3.4.1 Market size analysis, By Product, 2020-2027

          • 8.3.4.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.4.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.5 South Korea

          • 8.3.5.1 Market size analysis, By Product, 2020-2027

          • 8.3.5.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.5.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.6 Rest of Asia-Pacific

          • 8.3.6.1 Market size analysis, By Product, 2020-2027

          • 8.3.6.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.3.6.3 Market size analysis, By Device Type, 2020-2027

        • 8.3.7 Research Dive Exclusive Insights

          • 8.3.7.1 Market attractiveness

          • 8.3.7.2 Competition heatmap

      • 8.4 LAMEA

        • 8.4.1 Brazil

          • 8.4.1.1 Market size analysis, By Product, 2020-2027

          • 8.4.1.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.4.1.3 Market size analysis, By Device Type, 2020-2027

        • 8.4.2 Saudi Arabia

          • 8.4.2.1 Market size analysis, By Product, 2020-2027

          • 8.4.2.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.4.2.3 Market size analysis, By Device Type, 2020-2027

        • 8.4.3 UAE

          • 8.4.3.1 Market size analysis, By Product, 2020-2027

          • 8.4.3.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.4.3.3 Market size analysis, By Device Type, 2020-2027

        • 8.4.4 South Africa

          • 8.4.4.1 Market size analysis, By Product, 2020-2027

          • 8.4.4.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.4.4.3 Market size analysis, By Device Type, 2020-2027

        • 8.4.5 Rest of LAMEA

          • 8.4.5.1 Market size analysis, By Product, 2020-2027

          • 8.4.5.2 Market size analysis, By Distribution Channel, 2020-2027

          • 8.4.5.3 Market size analysis, By Device Type, 2020-2027

        • 8.4.6 Research Dive Exclusive Insights

          • 8.4.6.1 Market attractiveness

          • 8.4.6.2 Competition heatmap

    • 9. Competitive Landscape

      • 9.1 Top winning strategies, 2020-2027

        • 9.1.1 By strategy

        • 9.1.2 By year

      • 9.2 Strategic overview

      • 9.3 Market share analysis, 2020-2027

    • 10. Company Profiles

      • 10.1 3M

        • 10.1.1 Overview

        • 10.1.2 Business segments

        • 10.1.3 Product portfolio

        • 10.1.4 Financial performance

        • 10.1.5 Recent developments

        • 10.1.6 SWOT analysis

      • 10.2 MEISSNER FILTRATION PRODUCTS, INC.

        • 10.2.1 Overview

        • 10.2.2 Business segments

        • 10.2.3 Product portfolio

        • 10.2.4 Financial performance

        • 10.2.5 Recent developments

        • 10.2.6 SWOT analysis

      • 10.3 Sartorius AG

        • 10.3.1 Overview

        • 10.3.2 Business segments

        • 10.3.3 Product portfolio

        • 10.3.4 Financial performance

        • 10.3.5 Recent developments

        • 10.3.6 SWOT analysis

      • 10.4 Repligen Corporation

        • 10.4.1 Overview

        • 10.4.2 Business segments

        • 10.4.3 Product portfolio

        • 10.4.4 Financial performance

        • 10.4.5 Recent developments

        • 10.4.6 SWOT analysis

      • 10.5 Danaher

        • 10.5.1 Overview

        • 10.5.2 Business segments

        • 10.5.3 Product portfolio

        • 10.5.4 Financial performance

        • 10.5.5 Recent developments

        • 10.5.6 SWOT analysis

      • 10.6 Cellab

        • 10.6.1 Overview

        • 10.6.2 Business segments

        • 10.6.3 Product portfolio

        • 10.6.4 Financial performance

        • 10.6.5 Recent developments

        • 10.6.6 SWOT analysis

      • 10.7 Merck Millipore

        • 10.7.1 Overview

        • 10.7.2 Business segments

        • 10.7.3 Product portfolio

        • 10.7.4 Financial performance

        • 10.7.5 Recent developments

        • 10.7.6 SWOT analysis

      • 10.8 Thermo Fisher Scientific, Inc.

        • 10.8.1 Overview

        • 10.8.2 Business segments

        • 10.8.3 Product portfolio

        • 10.8.4 Financial performance

        • 10.8.5 Recent developments

        • 10.8.6 SWOT analysis

      • 10.9 Medela

        • 10.9.1 Overview

        • 10.9.2 Business segments

        • 10.9.3 Product portfolio

        • 10.9.4 Financial performance

        • 10.9.5 Recent developments

        • 10.9.6 SWOT analysis

      • 10.10 and DrM, Dr. Mueller AG.

        • 10.10.1 Overview

        • 10.10.2 Business segments

        • 10.10.3 Product portfolio

        • 10.10.4 Financial performance

        • 10.10.5 Recent developments

        • 10.10.6 SWOT analysis

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