CHICAGO, March 28, 2023 /PRNewswire/ -- According to Arizton's latest research report, the membrane bioreactors market will grow at a CAGR of 7.94% during 2022-2028.
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BROWSE IN-DEPTH TOC ON THE MEMBRANE BIOREACTORS MARKET
100 - Tables
75- Charts
236 – Pages
The increasing need for treated water and the efficient elimination of pathogens from wastewater treatment plants is boosting the demand for membrane bioreactors. Rising research and development activities to create advanced wastewater treatment methods that require lesser energy and incur reasonable prices are projected to lead the membrane bioreactors market in the upcoming years.
The increasing demand for water treatment solutions largely leads the global market. This can be attributed to the decrease in freshwater resources and the growth in demand for safe and chemical-free drinking water from the municipal. Moreover, increasing environmental concerns regarding effective sanitation and wastewater disposal are also boosting market growth. The substantial rise in the creation of wastewater throughout commercial, residential, and industrial complexes has increased the use of membrane bioreactors in these areas. Advances in submerged membrane bioreactors are also stimulating the growth of the membrane bioreactors market.
MEMBRANE BIOREACTORS MARKET REPORT SCOPE
REPORT ATTRIBUTES |
DETAILS |
Market Size (2028) |
USD 6.07 Billion |
Market Size (2022) |
USD 3.83 Billion |
CAGR (2022-2028) |
7.94 % |
Base Year |
2022 |
Forecast Year |
2023-2028 |
Market Segmentation |
Membrane Type, System Configuration, Application, System Type, and Geography |
Geographic Analysis |
North America, Europe, APAC, Latin America, and Middle East & Africa |
Countries Covered |
China, India, Japan, South Korea, Australia, the US, Canada, Germany, the UK, France, Italy, Russia, Brazil, Mexico, the GCC, and South Africa |
Largest Market |
APAC |
Market Dynamics |
· Growing Demand for High-Quality Effluents · Increasing MBR Installations Due to Growing Urbanization · Advancements in Membrane Bioreactor Technology |
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KEY INSIGHTS
- In 2020, APAC dominated the overall membrane bioreactors market with a share of 38.62% in terms of revenue. Rising global awareness of water pollution, rapid urbanization, and water scarcity issues are expected to boost the region's demand for membrane bioreactor systems.
- Implementing stringent regulations in industries and power plants regarding wastewater disposal is a key factor driving the growth of the membrane bioreactors market.
- The APAC membrane bioreactors market is witnessing substantial growth due to soaring demand from India and China. China and India have implemented numerous government regulations that have led to installing membrane bioreactor systems and reducing water pollution by executing water treatment techniques.
- With the rapid development of the economy and the acceleration of urbanization and industrialization, the rate of water pollution has increased.
- Based on the membrane type, the market consists of hollow fiber, flat sheet, and multi-tubular membrane bioreactors. Hollow fiber is the leading sector by membrane type, with a market share of 41.70% in 2020.
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The membrane bioreactor market in APAC is witnessing strong growth. The APAC membrane bioreactor market is largely driven by rapid urbanization and industrialization across countries such as China, India, and Japan, increasing the demand for clean water and effective wastewater treatment. Growing investments by the public sector in developing existing water and wastewater treatment systems with membrane bioreactor technology are boosting the market growth in APAC.
North America is accelerating due to rising investments in R&D for enhanced technologies and the region's increasing demand for water treatment systems. Growth in the pharmaceutical industry has fueled the demand for membrane bioreactors, thereby supporting the growth of the membrane bioreactors market in the region. Membrane bioreactors (MBRs) are increasingly used across Europe, offering communities cleaner rivers, groundwater, lakes, and coastal beaches. Several European water companies are commissioning and considering MBRs to treat municipal wastewater to meet stringent European water standards for safe water emission. On the other hand, Latin America and the Middle East are highly potential membrane bioreactors markets with enough opportunity for growth.
ABOUT THE REPORT
The global membrane bioreactors market is provided for the forecast years 2023 to 2028 and a base year of 2022. The market is segmented by membrane type, system configuration, application, system type, and geography for the years considered. The report provides a holistic approach to the global membrane bioreactors market to enable customers to analyze the market thoroughly.
KEY VENDORS
- Evoqua Water Technologies
- KUBOTA Corporation
- Mitsubishi Chemical Aqua Solutions
- Veolia
- Alfa Laval
- Aquatech International
- Asahi Kasei
- BioprocessH2O
- CITIC Envirotech
- Culligan
- HUBER SE
- Koch Separation Solutions
- Newterra
- Pall Corporation
- Parkson Corporation
- Pentair
- Saur
- Siemens
- Toray Industries
- WEHRLE
- Ovivo
- Smith & Loveless
- Lenntech
- DuPont
- Hinada
- MANN+HUMMEL
- MARTIN Membrane Systems
- Sanitherm
- Sumitomo Electric Industries
- Triqua International
MARKET SEGMENTATION
Membrane Type
- Hollow Fiber
- Flat Sheet
- Multi-Tubular
System Configuration
- Submerged
- Side Stream
Application
- Municipal
- Industrial
System Type
- Gravity-based
- Pressure-driven
Geography
- APAC
- China
- India
- Japan
- South Korea
- Australia
- North America
- The US
- Canada
- Europe
- Germany
- The UK
- France
- Italy
- Russia
- Latin America
- Brazil
- Mexico
- Middle East & Africa
- The GCC
- South Africa
TABLE OF CONTENT
1 RESEARCH METHODOLOGY
2 RESEARCH OBJECTIVES
3 RESEARCH PROCESS
4 SCOPE & COVERAGE
4.1 MARKET DEFINITION
4.1.1 INCLUSIONS
4.1.2 EXCLUSIONS
4.1.3 MARKET ESTIMATION CAVEATS
4.2 BASE YEAR
4.3 SCOPE OF THE STUDY
4.4 MARKET SEGMENTS
4.4.1 MARKET SEGMENTATION BY MEMBRANE TYPE
4.4.2 MARKET SEGMENTATION BY SYSTEM CONFIGURATION
4.4.3 MARKET SEGMENTATION BY APPLICATION
4.4.4 MARKET SEGMENTATION BY TYPE OF SYSTEM
4.4.5 MARKET SEGMENTATION BY GEOGRAPHY
5 REPORT ASSUMPTIONS & CAVEATS
5.1 KEY CAVEATS
5.2 CURRENCY CONVERSION
5.3 MARKET DERIVATION
6 MARKET AT A GLANCE
7 PREMIUM INSIGHTS
7.1 MARKET OVERVIEW
7.2 MARKET DYNAMICS: KEY TRENDS, DRIVERS, AND RESTRAINTS
7.2.1 MARKET TRENDS
7.2.2 MARKET ENABLERS
7.2.3 MARKET RESTRAINTS
7.3 SEGMENT ANALYSIS
7.4 GEOGRAPHICAL ANALYSIS
7.5 COMPETITIVE LANDSCAPE
7.6 ABOUT THE REPORT
8 INTRODUCTION
8.1 OVERVIEW
8.1.1 BENEFITS OF MBR OVER CONVENTIONAL ACTIVATED SLUDGE WASTEWATER TREATMENT
8.2 COMPONENTS OF MEMBRANE BIOREACTORS
8.3 MBR OPERATION AND MAINTENANCE
8.3.1 NUTRIENT REMOVAL
8.3.2 BIOLOGICAL PROCESS PARAMETERS IN MBRS
8.4 MBR COSTS OVERVIEW
8.5 MEMBRANES FOR WASTEWATER TREATMENT
8.5.1 TRENDS IN THE WASTEWATER TREATMENT INDUSTRY
8.6 GOVERNMENT REGULATIONS
9 MARKET OPPORTUNITIES & TRENDS
9.1 GROWING DEMAND FOR HIGH-QUALITY EFFLUENTS
9.2 INCREASING MBR INSTALLATIONS DUE TO GROWING URBANIZATION
9.3 ADVANCES IN MBR TECHNOLOGY
10 MARKET GROWTH ENABLERS
10.1 LIMITED AVAILABILITY OF CLEAN WATER
10.2 IMPLEMENTATION OF STRINGENT ENVIRONMENTAL REGULATIONS
10.3 GROWING DEMAND FOR HOSPITAL WASTEWATER TREATMENT
10.4 RISING CONCERN REGARDING WATERBORNE DISEASES
11 MARKET RESTRAINTS
11.1 HIGH CAPITAL & OPERATIONAL COST OF MBRS
11.2 ADVANCED SYSTEMS REQUIRE A SKILLED WORKFORCE
11.3 MEMBRANE FOULING
12 MARKET LANDSCAPE
12.1 MARKET SIZE & FORECAST
12.2 FIVE FORCES ANALYSIS
12.2.1 THREAT OF NEW ENTRANTS
12.2.2 BARGAINING POWER OF SUPPLIERS
12.2.3 BARGAINING POWER OF BUYERS
12.2.4 THREAT OF SUBSTITUTES
12.2.5 COMPETITIVE RIVALRY
13 MEMBRANE TYPE
13.1 MARKET SNAPSHOT & GROWTH ENGINE
13.2 MARKET OVERVIEW
13.3 HOLLOW FIBER
13.3.1 MARKET SIZE & FORECAST
13.3.2 MARKET BY GEOGRAPHY
13.4 FLAT SHEET
13.4.1 MARKET SIZE & FORECAST
13.4.2 MARKET BY GEOGRAPHY
13.5 MULTI-TUBULAR
13.5.1 MARKET SIZE & FORECAST
13.5.2 MARKET BY GEOGRAPHY
14 SYSTEM CONFIGURATION
14.1 MARKET SNAPSHOT & GROWTH ENGINE
14.2 MARKET OVERVIEW
14.3 SUBMERGED
14.3.1 MARKET SIZE & FORECAST
14.3.2 MARKET BY GEOGRAPHY
14.4 SIDE STREAM
14.4.1 MARKET SIZE & FORECAST
14.4.2 MARKET BY GEOGRAPHY
15 APPLICATION
15.1 MARKET SNAPSHOT & GROWTH ENGINE
15.2 MARKET OVERVIEW
15.3 MUNICIPAL
15.3.1 MARKET SIZE & FORECAST
15.3.2 MARKET BY GEOGRAPHY
15.4 INDUSTRIAL
15.4.1 MARKET SIZE & FORECAST
15.4.2 MARKET BY GEOGRAPHY
16 SYSTEM TYPE
16.1 MARKET SNAPSHOT & GROWTH ENGINE
16.2 MARKET OVERVIEW
16.3 GRAVITY BASED
16.3.1 MARKET SIZE & FORECAST
16.3.2 MARKET BY GEOGRAPHY
16.4 PRESSURE DRIVEN
16.4.1 MARKET SIZE & FORECAST
16.4.2 MARKET BY GEOGRAPHY
17 GEOGRAPHY
17.1 MARKET SNAPSHOT & GROWTH ENGINE
17.2 GEOGRAPHIC OVERVIEW
18 APAC
18.1 MARKET SIZE & FORECAST
18.2 MEMBRANE TYPE
18.2.1 MARKET SIZE & FORECAST
18.3 SYSTEM CONFIGURATION
18.3.1 MARKET SIZE & FORECAST
18.4 APPLICATION
18.4.1 MARKET SIZE & FORECAST
18.5 SYSTEM TYPE
18.5.1 MARKET SIZE & FORECAST
18.6 KEY COUNTRIES
18.6.1 CHINA: MARKET SIZE & FORECAST
18.6.2 INDIA: MARKET SIZE & FORECAST
18.6.3 JAPAN: MARKET SIZE & FORECAST
18.6.4 SOUTH KOREA: MARKET SIZE & FORECAST
18.6.5 AUSTRALIA: MARKET SIZE & FORECAST
19 NORTH AMERICA
19.1 MARKET SIZE & FORECAST
19.2 MEMBRANE TYPE
19.2.1 MARKET SIZE & FORECAST
19.3 SYSTEM CONFIGURATION
19.3.1 MARKET SIZE & FORECAST
19.4 APPLICATION
19.4.1 MARKET SIZE & FORECAST
19.5 SYSTEM TYPE
19.5.1 MARKET SIZE & FORECAST
19.6 KEY COUNTRIES
19.6.1 US: MARKET SIZE & FORECAST
19.6.2 CANADA: MARKET SIZE & FORECAST
20 EUROPE
20.1 MARKET SIZE & FORECAST
20.2 MEMBRANE TYPE
20.2.1 MARKET SIZE & FORECAST
20.3 SYSTEM CONFIGURATION
20.3.1 MARKET SIZE & FORECAST
20.4 APPLICATION
20.4.1 MARKET SIZE & FORECAST
20.5 SYSTEM TYPE
20.5.1 MARKET SIZE & FORECAST
20.6 KEY COUNTRIES
20.6.1 GERMANY: MARKET SIZE & FORECAST
20.6.2 UK: MARKET SIZE & FORECAST
20.6.3 FRANCE: MARKET SIZE & FORECAST
20.6.4 ITALY: MARKET SIZE & FORECAST
20.6.5 RUSSIA: MARKET SIZE & FORECAST
21 LATIN AMERICA
21.1 MARKET SIZE & FORECAST
21.2 MEMBRANE TYPE
21.2.1 MARKET SIZE & FORECAST
21.3 SYSTEM CONFIGURATION
21.3.1 MARKET SIZE & FORECAST
21.4 APPLICATION
21.4.1 MARKET SIZE & FORECAST
21.5 SYSTEM TYPE
21.5.1 MARKET SIZE & FORECAST
21.6 KEY COUNTRIES
21.6.1 BRAZIL: MARKET SIZE & FORECAST
21.6.2 MEXICO: MARKET SIZE & FORECAST
22 MIDDLE EAST & AFRICA
22.1 MARKET SIZE & FORECAST
22.2 MEMBRANE TYPE
22.2.1 MARKET SIZE & FORECAST
22.3 SYSTEM CONFIGURATION
22.3.1 MARKET SIZE & FORECAST
22.4 APPLICATION
22.4.1 MARKET SIZE & FORECAST
22.5 SYSTEM TYPE
22.5.1 MARKET SIZE & FORECAST
22.6 KEY COUNTRIES
22.6.1 GCC: MARKET SIZE & FORECAST
22.6.2 SOUTH AFRICA: MARKET SIZE & FORECAST
23 COMPETITIVE LANDSCAPE
23.1 COMPETITION OVERVIEW
24 KEY COMPANY PROFILES
24.1 EVOQUA WATER TECHNOLOGIES
24.1.1 BUSINESS OVERVIEW
24.1.2 PRODUCT OFFERINGS
24.1.3 KEY STRATEGIES
24.1.4 KEY STRENGTHS
24.1.5 KEY OPPORTUNITIES
24.2 KUBOTA CORPORATION
24.3 MITSUBISHI CHEMICAL AQUA SOLUTIONS
24.4 VEOLIA
25 OTHER PROMINENT VENDORS
25.1 ALFA LAVAL
25.1.1 BUSINESS OVERVIEW
25.1.2 PRODUCT OFFERINGS
25.2 AQUATECH INTERNATIONAL
25.3 ASAHI KASEI
25.4 BIOPROCESSH2O
25.5 CITIC ENVIROTECH
25.6 CULLIGAN
25.7 HUBER SE
25.8 KOCH SEPARATION SOLUTIONS
25.9 NEWTERRA
25.10 PALL CORPORATION
25.11 PARKSON CORPORATION
25.12 PENTAIR
25.13 SAUR
25.14 SIEMENS
25.15 TORAY INDUSTRIES
25.16 WEHRLE
25.17 OVIVO
25.18 SMITH & LOVELESS
25.19 LENNTECH
25.20 DUPONT
25.21 HINADA
25.22 MANN+HUMMEL
25.23 MARTIN MEMBRANE SYSTEMS
25.24 SANITHERM
25.25 SUMITOMO ELECTRIC INDUSTRIES
25.26 TRIQUA INTERNATIONAL
26 REPORT SUMMARY
26.1 KEY TAKEAWAYS
26.2 STRATEGIC RECOMMENDATIONS
27 QUANTITATIVE SUMMARY
27.1 MARKET BY GEOGRAPHY
27.2 APAC
27.2.1 MEMBRANE TYPE
27.2.2 SYSTEM CONFIGURATION
27.2.3 APPLICATION
27.2.4 SYSTEM TYPE
27.3 NORTH AMERICA
27.3.1 MEMBRANE TYPE
27.3.2 SYSTEM CONFIGURATION
27.3.3 APPLICATION
27.3.4 SYSTEM TYPE
27.4 EUROPE
27.4.1 MEMBRANE TYPE
27.4.2 SYSTEM CONFIGURATION
27.4.3 APPLICATION
27.4.4 SYSTEM TYPE
27.5 LATIN AMERICA
27.5.1 MEMBRANE TYPE
27.5.2 SYSTEM CONFIGURATION
27.5.3 APPLICATION
27.5.4 SYSTEM TYPE
27.6 MIDDLE EAST & AFRICA
27.6.1 MEMBRANE TYPE
27.6.2 SYSTEM CONFIGURATION
27.6.3 APPLICATION
27.6.4 SYSTEM TYPE
27.7 MEMBRANE TYPE
27.7.1 HOLLOW FIBER
27.7.2 FLAT SHEET
27.7.3 MULTI-TUBULAR
27.8 SYSTEM CONFIGURATION
27.8.1 SUBMERGED
27.8.2 SIDE STREAM
27.9 APPLICATION
27.9.1 MUNICIPAL
27.9.2 INDUSTRIAL
27.10 SYSTEM TYPE
27.10.1 GRAVITY-BASED
27.10.2 PRESSURE-DRIVEN
28 APPENDIX
28.1 ABBREVIATIONS
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