メンブレン精密濾過の世界市場分析2013-2017

Future Market Insightsが発行した調査報告書(FUMI90546)
◆英語タイトル:Membrane Microfiltration Market: Global Industry Analysis 2013-2017 and Opportunity Assessment 2018-2028
◆商品コード:FUMI90546
◆発行会社(リサーチ会社):Future Market Insights
◆発行日:2018年9月
◆ページ数:242
◆レポート形式:英語 / PDF
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※本調査レポートでは、メンブレン精密濾過の世界市場について調査・分析し、以下の構成でお届けいたします。
・メンブレン精密濾過の世界市場の世界市場概観
・メンブレン精密濾過の世界市場の世界市場規模
・メンブレン精密濾過の世界市場の世界市場予測
・メンブレン精密濾過の世界市場の世界市場:地域別市場分析
・メンブレン精密濾過の世界市場のアメリカ市場規模
・メンブレン精密濾過の世界市場のヨーロッパ市場規模
・メンブレン精密濾過の世界市場のアジア市場規模
・メンブレン精密濾過の世界市場の世界市場:セグメント別市場分析
・メンブレン精密濾過の世界市場の世界市場:競争状況
・メンブレン精密濾過の世界市場の世界市場:市場動向
・メンブレン精密濾過の世界市場の世界市場:関連企業分析
【レポートの概要】

This Future Market Insights (FMI) report examines the ‘Global Membrane Microfiltration Market’ for the period 2018–2028. The primary objective of the report is to offer updates and information related to market opportunities in the global membrane microfiltration market.

This report covers the global membrane microfiltration market performance in terms of revenue contribution from various segments. The report begins with an overview and definitions. The market viewpoints section underlines the macro-economic factors influencing the growth of the global membrane microfiltration market along with detailing the opportunity analysis of the market. This is then followed by the key market drivers, restraints and trends.

The Global Membrane Microfiltration Market is Segmented Based on:

Material Type

Application

Region

The global membrane microfiltration market by material type is further sub-segmented into cross-flow filtration and dead-end filtration modalities covering Polyethersulphone (PES) membranes, Polypropylene (PP) membranes, Polyvinylidene difluoride (PVDF) membranes, Polytetrafluoroethylene (PTFE) membranes, Poly Ether ketone (PEEK) membranes, Polyimide membranes, and Cellulose membranes. The cross-flow filtration is expected to be the dominant segment in the global membrane microfiltration market owing to its relative advantages over dead-end filtration. High demand for filtration and separation technologies in various industry-specific processes globally is expected to drive the demand for membrane microfilters.

By application, the global membrane microfiltration market is segmented into water treatment applications, dairy & food processing applications, biopharmaceutical applications, chemical applications, and others. The water treatment is expected to be the dominant segment in the global membrane microfiltration market followed by dairy & food processing applications, and others.

By region, the global membrane microfiltration market is segmented into North America (the U.S. & Canada), Latin America (Brazil, Mexico, and Rest of Latin America), Western Europe (Germany, France, the U.K., Italy, Spain, BENELUX, Nordic, and Rest of Western Europe), Eastern Europe (Russia, Poland and Rest of Eastern Europe), Asia Pacific excluding China and Japan (India, Australia & New Zealand and Rest of Asia Pacific), China, Japan and Middle East and Africa (GCC Countries, South Africa and Rest of MEA).

A detailed analysis has been provided for each region in terms of market size, Y-o-Y growth rate, absolute $ opportunity, and market attractive index. The forecast of the membrane microfiltration market by country, material type, and application is represented in a tabular form for each region. This section will help to understand the present scenario and opportunity of the membrane microfiltration market in major countries by each segment.

In the next section of the report, the ‘Competitive Landscape’ is included to provide report audiences with a dashboard view of the key competitor firms in order to access the key differentiators among the competitor firms. This section is primarily designed to provide clients with an objective and detailed comparative assessment of product offerings and strategies of key providers specific to a market segment. The detailed profiles of players operating in the membrane microfiltration market are also provided in the report, which highlight company description, product/segment overview, SWOT analysis, financial information, key developments related to the membrane microfiltration market and the strategic overview.

The next section of the report highlights the market outlook for 2018–2028 and sets the forecast within the context of the membrane microfiltration market by region.

The sections – by material type, application and regions – evaluate the historic market analysis and growth prospects of the membrane microfiltration market for the period 2018–2028. We have considered 2017 as the base year and provided data for the forecast period.

The final section of the report represents the global scenario of the membrane microfiltration market along with y-o-y growth and market forecast till 2028. This section also evaluates the global market opportunity over the forecast period as well as the absolute dollar opportunity for each year. This section will help to understand the overall market growth for infusion pumps and the opportunity analysis for every year over the forecast period.

To arrive at the market size, bottom-up approach is used to validate the total market size obtained for the membrane microfiltration market. The forecast presented in the report provides total revenue of the membrane microfiltration market over 2018–2028. FMI has used the triangulation methodology, which is primarily based on experimental techniques such as patient-level data to obtain precise market estimations for infusion pumps and insights on specific country/regions. The country-specific data is again analysed to derive data at a regional level and then at a global level. This methodology ensures high quality and accuracy of information.

The factors considered while developing the estimates of the membrane microfiltration market are GDP growth, biopharmaceutical industry growth, chemical industry growth, and water management industry growth.

On the other hand, FMI has also analysed the market by considering the revenue from the key players operating in the membrane microfiltration market. The key players are segmented at a tier level with respect to their revenues, product portfolio and geographical presence. This process involves analysis of annual reports of various companies, investor presentations, SEC filings, 10k reports, earning call transcripts and press releases. This task is done to fetch substantial information about the key players, their respective revenues and estimate their respective market share.

The revenue growth of the key players operating in the membrane microfiltration market is analysed over the historical period, and the qualitative assessment of new product launches and innovations has been made in order to validate and align the resultant market numbers. The market structure is closely studied and analysed at a regional level to map and ascertain incremental $ opportunity for companies, for instance, supply from domestic/regional players, small-scale enterprises or unorganized segments is also taken into consideration to arrive at the final market numbers.

While forecasting the market size for the membrane microfiltration market, we have considered the impact of several factors such as GDP growth, biopharmaceutical industry growth, chemical industry growth, and water management industry growth and company’s penetration across all the regions. However, quantifying the membrane microfiltration market across the aforementioned segments and regions is more a matter of quantifying expectations and identifying opportunities rather than rationalizing them after the forecast has been completed. In addition, we have taken into consideration the year-on-year growth to understand the predictability of the membrane microfiltration market and to identify the precise growth opportunities in the global membrane microfiltration market.

【レポートの目次】

1. Executive Summary

1.1. Market Overview

1.2. Market Analysis

1.3. FMI Analysis and Recommendations

1.4. Wheel of Fortune

2. Market Introduction

2.1. Market Taxonomy

2.2. Market Definition

2.3. Exclusion and Inclusion

2.4. Target Market Analysis (US$ Mn), 2018

2.4.1. Global Filtration Market

2.4.2. Global Membrane Market

3. Membrane Microfiltration Market Opportunity Analysis

3.1. Macro-Economic Factors

3.2. Opportunity Analysis

4. Market Background

4.1. Value Chain Analysis

4.2. Market Dynamics

4.2.1. Drivers

4.2.2. Restraints

4.2.3. Trends

5. Key Inclusions

5.1. List of Manufacturers

5.2. Membrane Microfiltration Market Pricing (US$ MM/m2) Analysis by Membrane Type

5.2.1. CrossFlow Membranes

5.2.1.1. PES Membrane Filters

5.2.1.2. PP Membrane Filters

5.2.1.3. PVDF Membrane Filters

5.2.1.4. PTFE Membrane Filters

5.2.1.5. PEEK Membrane Filters

5.2.1.6. Poly Imide Membrane Filters

5.2.1.7. Cellulose Membrane Filters

5.2.2. Direct Flow Membranes

5.2.2.1. PES Membrane Filters

5.2.2.2. PP Membrane Filters

5.2.2.3. PVDF Membrane Filters

5.2.2.4. PTFE Membrane Filters

5.2.2.5. PEEK Membrane Filters

5.2.2.6. Poly Imide Membrane Filters

5.2.2.7. Cellulose Membrane Filters

6. North America Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

6.1. Introduction

6.2. Historical Market Value (US$ Mn) Analysis By Country, 2013-2017

6.2.1. U.S.

6.2.2. Canada

6.3. Market Value (US$ Mn) Forecast By Country, 2018-2028

6.4. Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

6.4.1. CrossFlow Membranes

6.4.1.1. PES Membrane Filters

6.4.1.2. PP Membrane Filters

6.4.1.3. PVDF Membrane Filters

6.4.1.4. PTFE Membrane Filters

6.4.1.5. PEEK Membrane Filters

6.4.1.6. Poly Imide Membrane Filters

6.4.1.7. Cellulose Membrane Filters

6.4.2. Direct Flow Membranes

6.4.2.1. PES Membrane Filters

6.4.2.2. PP Membrane Filters

6.4.2.3. PVDF Membrane Filters

6.4.2.4. PTFE Membrane Filters

6.4.2.5. PEEK Membrane Filters

6.4.2.6. Poly Imide Membrane Filters

6.4.2.7. Cellulose Membrane Filters

6.5. Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

6.6. Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

6.6.1. Biopharmaceutical Processing

6.6.2. Water Treatment Application

6.6.3. Dairy & Food Processing

6.6.4. Chemical Application

6.6.5. Others

6.7. Market Value(US$ Mn) Forecast By Application, 2018-2028

6.8. Market Attractiveness Analysis

6.8.1. By Country

6.8.2. By Material Type

6.8.3. By Application

6.9. Drivers and Restraints: Impact Analysis

6.10.Key Market Participants – Intensity Mapping

7. Latin America Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

7.1. Introduction

7.2. Historical Market Value(US$ Mn) Analysis By Country, 2013-2017

7.2.1. Brazil

7.2.2. Mexico

7.2.3. Argentina

7.2.4. Rest of Latin America

7.3. Market Value(US$ Mn) Forecast By Country, 2018-2028

7.4. Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

7.4.1. CrossFlow Membranes

7.4.1.1. PES Membrane Filters

7.4.1.2. PP Membrane Filters

7.4.1.3. PVDF Membrane Filters

7.4.1.4. PTFE Membrane Filters

7.4.1.5. PEEK Membrane Filters

7.4.1.6. Poly Imide Membrane Filters

7.4.1.7. Cellulose Membrane Filters

7.4.2. Direct Flow Membranes

7.4.2.1. PES Membrane Filters

7.4.2.2. PP Membrane Filters

7.4.2.3. PVDF Membrane Filters

7.4.2.4. PTFE Membrane Filters

7.4.2.5. PEEK Membrane Filters

7.4.2.6. Poly Imide Membrane Filters

7.4.2.7. Cellulose Membrane Filters

7.5. Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

7.6. Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

7.6.1. Biopharmaceutical Processing

7.6.2. Water Treatment Application

7.6.3. Dairy & Food Processing

7.6.4. Chemical Application

7.6.5. Others

7.7. Market Value(US$ Mn) Forecast By Application, 2018-2028

7.8. Market Attractiveness Analysis

7.8.1. By Country

7.8.2. By Material Type

7.8.3. By Application

7.9. Drivers and Restraints: Impact Analysis

7.10.Key Market Participants – Intensity Mapping

8. Western Europe Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

8.1. Introduction

8.2. Historical Market Value(US$ Mn) Analysis By Country, 2013-2017

8.2.1. Germany

8.2.2. U.K

8.2.3. France

8.2.4. Italy

8.2.5. Spain

8.2.6. Nordics

8.2.7. Benelux

8.2.8. Rest of Western Europe

8.3. Market Value(US$ Mn) Forecast By Country, 2018-2028

8.4. Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

8.4.1. CrossFlow Membranes

8.4.1.1. PES Membrane Filters

8.4.1.2. PP Membrane Filters

8.4.1.3. PVDF Membrane Filters

8.4.1.4. PTFE Membrane Filters

8.4.1.5. PEEK Membrane Filters

8.4.1.6. Poly Imide Membrane Filters

8.4.1.7. Cellulose Membrane Filters

8.4.2. Direct Flow Membranes

8.4.2.1. PES Membrane Filters

8.4.2.2. PP Membrane Filters

8.4.2.3. PVDF Membrane Filters

8.4.2.4. PTFE Membrane Filters

8.4.2.5. PEEK Membrane Filters

8.4.2.6. Poly Imide Membrane Filters

8.4.2.7. Cellulose Membrane Filters

8.5. Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

8.6. Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

8.6.1. Biopharmaceutical Processing

8.6.2. Water Treatment Application

8.6.3. Dairy & Food Processing

8.6.4. Chemical Application

8.6.5. Others

8.7. Market Value(US$ Mn) Forecast By Application, 2018-2028

8.8. Market Attractiveness Analysis

8.8.1. By Country

8.8.2. By Material Type

8.8.3. By Application

8.9. Drivers and Restraints: Impact Analysis

8.10.Key Market Participants – Intensity Mapping

9. Eastern Europe Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

9.1. Introduction

9.2. Historical Market Value(US$ Mn) Analysis By Country, 2013-2017

9.2.1. Russia

9.2.2. Poland

9.2.3. Rest of Eastern Europe

9.3. Market Value(US$ Mn) Forecast By Country, 2018-2028

9.1. Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

9.1.1. CrossFlow Membranes

9.1.1.1. PES Membrane Filters

9.1.1.2. PP Membrane Filters

9.1.1.3. PVDF Membrane Filters

9.1.1.4. PTFE Membrane Filters

9.1.1.5. PEEK Membrane Filters

9.1.1.6. Poly Imide Membrane Filters

9.1.1.7. Cellulose Membrane Filters

9.1.2. Direct Flow Membranes

9.1.2.1. PES Membrane Filters

9.1.2.2. PP Membrane Filters

9.1.2.3. PVDF Membrane Filters

9.1.2.4. PTFE Membrane Filters

9.1.2.5. PEEK Membrane Filters

9.1.2.6. Poly Imide Membrane Filters

9.1.2.7. Cellulose Membrane Filters

9.2. Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

9.3. Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

9.3.1. Biopharmaceutical Processing

9.3.2. Water Treatment Application

9.3.3. Dairy & Food Processing

9.3.4. Chemical Application

9.3.5. Others

9.4. Market Value(US$ Mn) Forecast By Application, 2018-2028

9.5. Market Attractiveness Analysis

9.5.1. By Country

9.5.2. By Material Type

9.5.3. By Application

9.6. Drivers and Restraints: Impact Analysis

9.7. Key Market Participants – Intensity Mapping

10. Asia Pacific Excluding China & Japan Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

10.1.Introduction

10.2.Historical Market Value(US$ Mn) Analysis By Country, 2013-2017

10.2.1. India

10.2.2. Australia and New Zealand

10.2.3. ASEAN

10.2.4. Rest of APECJ

10.3.Market Value(US$ Mn) Forecast By Country, 2018-2028

10.1.Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

10.1.1. CrossFlow Membranes

10.1.1.1. PES Membrane Filters

10.1.1.2. PP Membrane Filters

10.1.1.3. PVDF Membrane Filters

10.1.1.4. PTFE Membrane Filters

10.1.1.5. PEEK Membrane Filters

10.1.1.6. Poly Imide Membrane Filters

10.1.1.7. Cellulose Membrane Filters

10.1.2. Direct Flow Membranes

10.1.2.1. PES Membrane Filters

10.1.2.2. PP Membrane Filters

10.1.2.3. PVDF Membrane Filters

10.1.2.4. PTFE Membrane Filters

10.1.2.5. PEEK Membrane Filters

10.1.2.6. Poly Imide Membrane Filters

10.1.2.7. Cellulose Membrane Filters

10.2.Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

10.3.Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

10.3.1. Biopharmaceutical Processing

10.3.2. Water Treatment Application

10.3.3. Dairy & Food Processing

10.3.4. Chemical Application

10.3.5. Others

10.4.Market Value(US$ Mn) Forecast By Application, 2018-2028

10.5.Market Attractiveness Analysis

10.5.1. By Country

10.5.2. By Material Type

10.5.3. By Application

10.6.Drivers and Restraints: Impact Analysis

10.7.Key Market Participants – Intensity Mapping

11. China Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

11.1.Introduction

11.2.Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

11.2.1. CrossFlow Membranes

11.2.1.1. PES Membrane Filters

11.2.1.2. PP Membrane Filters

11.2.1.3. PVDF Membrane Filters

11.2.1.4. PTFE Membrane Filters

11.2.1.5. PEEK Membrane Filters

11.2.1.6. Poly Imide Membrane Filters

11.2.1.7. Cellulose Membrane Filters

11.2.2. Direct Flow Membranes

11.2.2.1. PES Membrane Filters

11.2.2.2. PP Membrane Filters

11.2.2.3. PVDF Membrane Filters

11.2.2.4. PTFE Membrane Filters

11.2.2.5. PEEK Membrane Filters

11.2.2.6. Poly Imide Membrane Filters

11.2.2.7. Cellulose Membrane Filters

11.3.Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

11.4.Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

11.4.1. Biopharmaceutical Processing

11.4.2. Water Treatment Application

11.4.3. Dairy & Food Processing

11.4.4. Chemical Application

11.4.5. Others

11.5.Market Value(US$ Mn) Forecast By Application, 2018-2028

11.6.Market Attractiveness Analysis

11.6.1. By Country

11.6.2. By Material Type

11.6.3. By Application

11.7.Drivers and Restraints: Impact Analysis

11.8.Key Market Participants – Intensity Mapping

12. Japan Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

12.1.Introduction

12.2.Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

12.2.1. CrossFlow Membranes

12.2.1.1. PES Membrane Filters

12.2.1.2. PP Membrane Filters

12.2.1.3. PVDF Membrane Filters

12.2.1.4. PTFE Membrane Filters

12.2.1.5. PEEK Membrane Filters

12.2.1.6. Poly Imide Membrane Filters

12.2.1.7. Cellulose Membrane Filters

12.2.2. Direct Flow Membranes

12.2.2.1. PES Membrane Filters

12.2.2.2. PP Membrane Filters

12.2.2.3. PVDF Membrane Filters

12.2.2.4. PTFE Membrane Filters

12.2.2.5. PEEK Membrane Filters

12.2.2.6. Poly Imide Membrane Filters

12.2.2.7. Cellulose Membrane Filters

12.3.Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

12.4.Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

12.4.1. Biopharmaceutical Processing

12.4.2. Water Treatment Application

12.4.3. Dairy & Food Processing

12.4.4. Chemical Application

12.4.5. Others

12.5.Market Value(US$ Mn) Forecast By Application, 2018-2028

12.6.Market Attractiveness Analysis

12.6.1. By Material Type

12.6.2. By Application

12.7.Drivers and Restraints: Impact Analysis

12.8.Key Market Participants – Intensity Mapping

13. Middle East and Africa Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

13.1.Introduction

13.2.Historical Market Value(US$ Mn) Analysis By Country, 2013-2017

13.2.1. GCC Countries

13.2.2. South Africa

13.2.3. Rest of Middle East and Africa

13.3.Market Value(US$ Mn) Forecast By Country, 2018-2028

13.4.Historical Market Value (US$ Mn) & Volume (MM/m2) Analysis By Material Type, 2013-2017

13.4.1. CrossFlow Membranes

13.4.1.1. PES Membrane Filters

13.4.1.2. PP Membrane Filters

13.4.1.3. PVDF Membrane Filters

13.4.1.4. PTFE Membrane Filters

13.4.1.5. PEEK Membrane Filters

13.4.1.6. Poly Imide Membrane Filters

13.4.1.7. Cellulose Membrane Filters

13.4.2. Direct Flow Membranes

13.4.2.1. PES Membrane Filters

13.4.2.2. PP Membrane Filters

13.4.2.3. PVDF Membrane Filters

13.4.2.4. PTFE Membrane Filters

13.4.2.5. PEEK Membrane Filters

13.4.2.6. Poly Imide Membrane Filters

13.4.2.7. Cellulose Membrane Filters

13.5.Market Value (US$ Mn) & Volume (MM/m2) Forecast By Material Type, 2018-2028

13.6.Historical Market Value(US$ Mn) Trend Analysis By Application, 2013-2017

13.6.1. Biopharmaceutical Processing

13.6.2. Water Treatment Application

13.6.3. Dairy & Food Processing

13.6.4. Chemical Application

13.6.5. Others

13.7.Market Value(US$ Mn) Forecast By Application, 2018-2028

13.8.Market Attractiveness Analysis

13.8.1. By Country

13.8.2. By Material Type

13.8.3. By Application

13.9.Drivers and Restraints: Impact Analysis

13.10. Key Market Participants – Intensity Mapping

14. Market Structure Analysis

14.1.Market Structure by Tier

14.2.Market Share Analysis (2017)

15. Competition Analysis

15.1.Competition Dashboard

15.2.Company Profiles

15.2.1. Pall Corporation (Sub. Of Danaher)

15.2.1.1. Overview

15.2.1.2. Product and Application Portfolio

15.2.1.3. Production Footprint

15.2.1.4. Sales Footprint

15.2.1.5. Channel Footprint

15.2.1.6. Strategy

15.2.1.6.1. Marketing Strategy

15.2.1.6.2. Product Strategy

15.2.1.6.3. Channel Strategy

15.2.2. Alfa Laval AB

15.2.2.1. Overview

15.2.2.2. Product and Application Portfolio

15.2.2.3. Production Footprint

15.2.2.4. Sales Footprint

15.2.2.5. Channel Footprint

15.2.2.6. Strategy

15.2.2.6.1. Marketing Strategy

15.2.2.6.2. Product Strategy

15.2.2.6.3. Channel Strategy

15.2.3. Merck KGaA

15.2.3.1. Overview

15.2.3.2. Product and Application Portfolio

15.2.3.3. Production Footprint

15.2.3.4. Sales Footprint

15.2.3.5. Channel Footprint

15.2.3.6. Strategy

15.2.3.6.1. Marketing Strategy

15.2.3.6.2. Product Strategy

15.2.3.6.3. Channel Strategy

15.2.4. CITIC Envirotech Ltd

15.2.4.1. Overview

15.2.4.2. Product and Application Portfolio

15.2.4.3. Production Footprint

15.2.4.4. Sales Footprint

15.2.4.5. Channel Footprint

15.2.4.6. Strategy

15.2.4.6.1. Marketing Strategy

15.2.4.6.2. Product Strategy

15.2.4.6.3. Channel Strategy

15.2.5. 3M

15.2.5.1. Overview

15.2.5.2. Product and Application Portfolio

15.2.5.3. Production Footprint

15.2.5.4. Sales Footprint

15.2.5.5. Channel Footprint

15.2.5.6. Strategy

15.2.5.6.1. Marketing Strategy

15.2.5.6.2. Product Strategy

15.2.5.6.3. Channel Strategy

15.2.6. Parker Hannifin Corporation

15.2.6.1. Overview

15.2.6.2. Product and Application Portfolio

15.2.6.3. Production Footprint

15.2.6.4. Sales Footprint

15.2.6.5. Channel Footprint

15.2.6.6. Strategy

15.2.6.6.1. Marketing Strategy

15.2.6.6.2. Product Strategy

15.2.6.6.3. Channel Strategy

15.2.7. Lydall, Inc.

15.2.7.1. Overview

15.2.7.2. Product and Application Portfolio

15.2.7.3. Production Footprint

15.2.7.4. Sales Footprint

15.2.7.5. Channel Footprint

15.2.7.6. Strategy

15.2.7.6.1. Marketing Strategy

15.2.7.6.2. Product Strategy

15.2.7.6.3. Channel Strategy

15.2.8. Koch Membrane Systems Inc.

15.2.8.1. Overview

15.2.8.2. Product and Application Portfolio

15.2.8.3. Production Footprint

15.2.8.4. Sales Footprint

15.2.8.5. Channel Footprint

15.2.8.6. Strategy

15.2.8.6.1. Marketing Strategy

15.2.8.6.2. Product Strategy

15.2.8.6.3. Channel Strategy

15.2.9. GEA Group AG

15.2.9.1. Overview

15.2.9.2. Product and Application Portfolio

15.2.9.3. Production Footprint

15.2.9.4. Sales Footprint

15.2.9.5. Channel Footprint

15.2.9.6. Strategy

15.2.9.6.1. Marketing Strategy

15.2.9.6.2. Product Strategy

15.2.9.6.3. Channel Strategy

15.2.10. Synder Filtration, Inc.

15.2.10.1. Overview

15.2.10.2. Product and Application Portfolio

15.2.10.3. Production Footprint

15.2.10.4. Sales Footprint

15.2.10.5. Channel Footprint

15.2.10.6. Strategy

15.2.10.6.1. Marketing Strategy

15.2.10.6.2. Product Strategy

15.2.10.6.3. Channel Strategy

16. Global Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028 By Region

16.1.Introduction / Key Findings

16.2.Historical Market Value(US$ Mn) Analysis By Region

16.2.1. North America

16.2.2. Latin America

16.2.3. Western Europe

16.2.4. Eastern Europe

16.2.5. Asia Pacific Excluding Japan And China

16.2.6. China

16.2.7. Japan

16.2.8. Middle East and Africa

16.3.Market Value(US$ Mn) Forecast By Region

16.4.Market Attractiveness Analysis By Region

17. Global Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028, By Material Type

17.1.Introduction/Key Finding

17.2.Historical Market Value(US$ Mn) Analysis By Material Type, 2013-2017

17.2.1. CrossFlow Membranes

17.2.1.1. PES Membrane Filters

17.2.1.2. PP Membrane Filters

17.2.1.3. PVDF Membrane Filters

17.2.1.4. PTFE Membrane Filters

17.2.1.5. PEEK Membrane Filters

17.2.1.6. Poly Imide Membrane Filters

17.2.1.7. Cellulose Membrane Filters

17.2.2. Direct Flow Membranes

17.2.2.1. PES Membrane Filters

17.2.2.2. PP Membrane Filters

17.2.2.3. PVDF Membrane Filters

17.2.2.4. PTFE Membrane Filters

17.2.2.5. PEEK Membrane Filters

17.2.2.6. Poly Imide Membrane Filters

17.2.2.7. Cellulose Membrane Filters

17.3.Market Value(US$ Mn) Forecast By Material Type, 2018-2028

17.4.Market Attractiveness Analysis By Material Type

18. Global Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028, By Application

18.1.Introduction/Key Finding

18.2.Historical Market Value(US$ Mn) Analysis By Application, 2013-2017

18.2.1. Biopharmaceutical Processing

18.2.2. Water Treatment Application

18.2.3. Dairy & Food Processing

18.2.4. Chemical Application

18.2.5. Others

18.3.Market Value(US$ Mn) Forecast By Application, 2018-2028

18.4.Market Attractiveness Analysis By Application

19. Global Membrane Microfiltration Market Analysis 2013–2017 and Forecast 2018–2028

19.1.Market Value Share Analysis By All Segment

19.2.Y-o-Y Growth Analysis By All Segment

19.3.Absolute $ Opportunity

20. Assumptions and Acronyms Used

21. Research Methodology



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