Table of Contents
Chapter 1 Methodology and Scope
1.1 Market Segmentation And Scope
1.1.1 Segment Definitions
1.1.1.1 Membrane Material Segment
1.1.1.2 Process Segment
1.1.1.3 Technology Segment
1.1.1.4 Application Segment
1.1.1.5 End-use Segment
1.2 Information Procurement
1.2.1 Market Formulation & Data Visualization
1.2.2 Data Validation & Publishing
1.3 Research Assumptions
1.4 Research Methodology
1.4.1 Purchased Database
1.4.2 GVR’s Internal Database
1.4.3 Secondary Sources
1.4.5 Primary Research
1.4.6 Details Of Primary Research
1.5 Information Or Data Analysis
1.5.1 Data Analysis Models
1.6 Market Formulation & Validation
1.7 Model Details
1.7.1 Commodity Flow Analysis
1.7.1.1 Approach 1: Commodity Flow Approach
1.8 List Of Secondary Sources
1.9 Global Market: Cagr Calculation
1.10 Objectives
1.10.1 Objective 1:
1.10.2 Objective 2:
Chapter 2 Executive Summary
2.1 Market Snapshot
2.2 Segment Snapshot
2.3 Competitive Landscape Snapshot
Chapter 3 Hollow Fiber Filtration Market Variables, Trends & Scope
3.1 Market Lineage Outlook
3.1.1 Parent Market Outlook
3.2 Market Dynamics
3.2.1 Market Driver Impact Analysis
3.2.1.1 Growth In The Biopharmaceutical Industry
3.2.1.2 Increasing Preference For Continuous Manufacturing
3.2.1.3 Increasing Usage Of Single-use Technologies
3.2.2 Market Restraint Impact Analysis
3.2.2.1 Lack Of Skilled Professionals
3.2.2.2 Stringent Regulations Regarding Drug Safety
3.3 Penetration And Growth Prospect Mapping, By Technology, 2023
3.4 Impact Of Covid-19 Pandemic
3.5 Industry Analysis Tools
3.5.1 Porter’s Analysis
3.5.2 Swot Analysis, By Factor (Political & Legal, Economic, And Technological)
Chapter 4 Hollow Fiber Filtration Market: Membrane Material Estimates & Trend Analysis
4.1 Membrane Material Movement Analysis & Market Share, 2023 & 2030
4.2 Polysulfone (Ps)
4.2.1 Global Polysulfone Market Estimates And Forecasts, 2018 – 2030 (USD Million)
4.3 Mixed Cellulose Ester (Mce)
4.3.1 Global Mixed Cellulose Ester Market Estimates And Forecasts, 2018 – 2030 (USD Million)
4.4 Polyvinylidene Difluoride (Pvdf)
4.4.1 Global Polyvinylidene Difluoride Market Estimates And Forecasts, 2018 – 2030 (USD Million)
4.5 Polyethersulfone (Pes)
4.5.1 Global Polyethersulfone Market Estimates And Forecasts, 2018 – 2030 (USD Million)
4.6 Others
4.6.1 Global Others Market Estimates And Forecasts, 2018 – 2030 (USD Million)
Chapter 5 Hollow Fiber Filtration Market: Process Estimates & Trend Analysis
5.1 Process Movement Analysis & Market Share, 2023 & 2030
5.2 Hollow Fiber Filtration Market Estimates & Forecast, By Process (USD Million)
5.3 Single-use Hollow Fiber Membranes
5.3.1 Single-use Hollow Fiber Membranes Market, 2018 – 2030 (USD Million)
5.4 Reusable Hollow Fiber Membranes
5.4.1 Reusable Hollow Fiber Membranes Market, 2018 – 2030 (USD Million)
Chapter 6 Hollow Fiber Filtration Market: Technology Estimates & Trend Analysis
6.1 Technology Movement Analysis & Market Share, 2023 & 2030
6.2 Microfiltration
6.2.1 Global Microfiltration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
6.3 Ultrafiltration
6.3.1 Global Ultrafiltration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
6.4 Other Technologies
6.4.1 Global Other Technologies Market Estimates And Forecasts, 2018 – 2030 (USD Million)
Chapter 7 Hollow Fiber Filtration Market: Application Estimates & Trend Analysis
7.1 Application Movement Analysis & Market Share, 2023 & 2030
7.2 Hollow Fiber Filtration Market Estimates & Forecast, By Application (USD Million)
7.3 Virus Or Viral Vector Filtration
7.3.1 Virus Or Viral Vector Filtration Market, 2018 – 2030 (USD Million)
7.4 Protein Concentration & Diafiltration
7.4.1 Protein Concentration & Diafiltration Market, 2018 – 2030 (USD Million)
7.5 Cell Culture Harvest & Clarification
7.5.1 Cell Culture Harvest & Clarification Market, 2018 – 2030 (USD Million)
7.6 Raw Material Filtration
7.6.1 Raw Material Filtration Market, 2018 – 2030 (USD Million)
7.7 Others
7.7.1 Other Applications Market, 2018 – 2030 (USD Million)
Chapter 8 Hollow Fiber Filtration Market: End-use Estimates & Trend Analysis
8.2 End-use Movement Analysis & Market Share, 2023 & 2030
8.3 Pharmaceutical & Biotechnology Companies
8.3.1 Global Pharmaceutical & Biotechnology Companies Market Estimates And Forecasts, 2018 – 2030 (USD Million)
8.4 Cmos & Cros
8.4.1 Global Cmos & Cros Market Estimates And Forecasts, 2018 – 2030 (USD Million)
8.5 Academic & Research Institutes
8.5.1 Global Academic And Research Institutes Market Estimates And Forecasts, 2018 – 2030 (USD Million)
Chapter 9 Hollow Fiber Filtration Market: Regional Estimates And Trend Analysis
9.1 Hollow Fiber Filtration Market: Regional Outlook
9.2 North America
9.2.1 North America Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.2.2 U.S.
9.2.2.1 Key Country Dynamics
9.2.2.2 Competitive Scenario
9.2.2.3 U.S. Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.2.3 Canada
9.2.3.1 Key Ccountry Dynamics
9.2.3.2 Competitive Scenario
9.2.3.3 Canada Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3 Europe
9.3.1 Europe Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.2 UK
9.3.2.1 Key Country Dynamics
9.3.2.2 Competitive Scenario
9.3.2.3 UK Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.3 Germany
9.3.3.1 Key Country Dynamics
9.3.3.2 Competitive Scenario
9.3.3.3 Germany Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.4 France
9.3.4.1 Key Country Dynamics
9.3.4.2 Competitive Scenario
9.3.4.3 France Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.5 Italy
9.3.5.1 Key Country Dynamics
9.3.5.2 Competitive Scenario
9.3.5.3 Italy Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.6 Spain
9.3.6.1 Key Country Dynamics
9.3.6.2 Competitive Scenario
9.3.6.3 Spain Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.7 Denmark
9.3.7.1 Key Country Dynamics
9.3.7.2 Competitive Scenario
9.3.7.3 Denmark Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.8 Sweden
9.3.8.1 Key Country Dynamics
9.3.8.2 Competitive Scenario
9.3.8.3 Sweden Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.3.9 Norway
9.3.9.1 Key Country Dynamics
9.3.9.2 Competitive Scenario
9.3.9.3 Norway Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4 Asia Pacific
9.4.1 Asia Pacific Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.2 China
9.4.2.1 Key Country Dynamics
9.4.2.2 Competitive Scenario
9.4.2.3 China Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.3 Japan
9.4.3.1 Key Country Dynamics
9.4.3.2 Competitive Scenario
9.4.3.3 Japan Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.4 India
9.4.4.1 Key Country Dynamics
9.4.4.2 Competitive Scenario
9.4.4.3 India Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.5 South Korea
9.4.5.1 Key Country Dynamics
9.4.5.2 Competitive Scenario
9.4.5.3 South Korea Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.6 Australia
9.4.6.1 Key Country Dynamics
9.4.6.2 Competitive Scenario
9.4.6.3 Australia Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.4.7 Thailand
9.4.7.1 Key Country Dynamics
9.4.7.2 Competitive Scenario
9.4.7.3 Thailand Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.5 Latin America
9.5.1 Latin America Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.5.2 Brazil
9.5.2.1 Key Country Dynamics
9.5.2.2 Competitive Scenario
9.5.2.3 Brazil Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.5.3 Mexico
9.5.3.1 Key Country Dynamics
9.5.3.2 Competitive Scenario
9.5.3.3 Mexico Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.5.4 Argentina
9.5.4.1 Key Country Dynamics
9.5.4.2 Competitive Scenario
9.5.4.3 Argentina Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.6 MEA
9.6.1 MEA Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.6.2 South Africa
9.6.2.1 Key Country Dynamics
9.6.2.2 Competitive Scenario
9.6.2.3 South Africa Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.6.3 Saudi Arabia
9.6.3.1 Key Country Dynamics
9.6.3.2 Competitive Scenario
9.6.3.3 Saudi Arabia Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.6.4 UAE
9.6.4.1 Key Country Dynamics
9.6.4.2 Competitive Scenario
9.6.4.3 UAE Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
9.6.5 Kuwait
9.6.5.1 Key Country Dynamics
9.6.5.2 Competitive Scenario
9.6.5.3 Kuwait Hollow Fiber Filtration Market Estimates And Forecasts, 2018 – 2030 (USD Million)
Chapter 10 Hollow Fiber Filtration Market: Competitive Landscape
10.1 Participant Categorization
10.2 Participant’s Overview
10.2.1 Sartorius Ag
10.2.2 Danaher Corporation
10.2.3 Repligen Corporation
10.2.4 Merck Kgaa
10.2.5 Asahi Kasei Corporation
10.2.6 Parker Hannifin Corporation
10.2.7 Cole Parmer
10.2.8 Sterlitech Corporation
10.2.9 Synder Filtration, Inc.
10.2.10 Meissner Filtration Products, Inc.
10.3 Financial Performance
10.4 Product Benchmarking
10.5 Company Market Share Analysis, 2023
10.6 Strategy Mapping
10.6.1 Expansion
10.6.2 Acquisition
10.6.3 Product/service Launch
Chapter 11 Analyst View
| ※参考情報 中空糸ろ過とは、細長い中空の繊維を用いたろ過技術で、特に液体の浄化や分離に広く利用されている技術です。この技術は、膜ろ過の一種であり、内部に液体が通過する空間を持つ中空の糸状のフィルターを使用します。中空糸フィルターは、その構造上、非常に高い表面積を持つため、効率的に物質をろ過することができます。 中空糸ろ過にはいくつかの種類があります。一般的な分類としては、膜の孔径に基づいて超濾過(Ultrafiltration)、ナノ濾過(Nanofiltration)、逆浸透(Reverse Osmosis)などに分けられます。超濾過は、分子量が1,000から100,000程度の物質を分離することができ、細菌や大きなコロイド物質の除去に適しています。ナノ濾過はそれよりも小さいサイズの物質をターゲットにし、主に水中の硬度成分や有機物の除去に利用されます。逆浸透は、最も微細な孔径を持ち、塩分や重金属、その他の溶解物質を効果的に除去します。このように、用途に応じた膜の選定が可能なことが中空糸ろ過の大きな特徴です。 用途としては、水処理、食品加工、医薬品製造、バイオテクノロジー、さらにはエネルギー分野に至るまで多岐にわたります。水処理では、飲料水の浄化や wastewater 処理が主な用途です。特に、都市部では、下水を浄化して再利用するための技術として中空糸ろ過が注目されています。食品業界では、乳製品やジュースのろ過や濃縮によく利用される方法です。医薬品製造では、熱に弱い成分や細胞の除去を行う際に中空糸フィルターが重要な役割を果たします。バイオテクノロジー分野では、細胞培養液からの分離や精製プロセスに利用され、効率的なターゲット物質の抽出が可能となります。 関連技術としては、膜ろ過プロセスに関連する様々な技術が存在します。例えば、膜モジュール設計技術やろ過方式の最適化技術、さらには膜の材料技術があります。膜材料としては、ポリスulfoneやポリアミド等の高分子材料が多く使われますが、最近ではグラフェンやセラミック材料を使用した膜の研究も進んでいます。これにより、耐久性や選択透過性の向上が期待されています。また、超音波や電気的手法を用いた膜のクリーニング技術も開発され、フィルターの寿命を延ばす工夫が進んでいます。 さらに、デジタル技術の進展により、リアルタイムでのモニタリングや制御が可能なシステムが開発されています。これにより、ろ過プロセスの効率的な運用ができるようになり、メンテナンスコストの低減にも寄与しています。このように、中空糸ろ過技術は、さまざまな関連技術と組み合わせることで、より効果的かつ持続可能な方法で物質の分離や浄化に貢献しています。 中空糸ろ過技術は、その多様な応用分野と進化する技術革新によって、今後ますます重要な役割を果たすことが期待されています。特に、環境問題の解決や資源の有効活用が求められる現代において、中空糸ろ過は持続可能な社会を築く一助となる技術の一つといえるでしょう。様々な分野での応用が進み、さらなる技術の進化が期待される中で、中空糸ろ過技術は長期的な視点からも注目されるべき領域です。 |
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