Membrane Aerated Biofilm Reactor Market- Global Industry Size, Share, Trends, Opportunity, and Forecast. 2018-2028F, Segmented By Application (Municipal and Industrial), By Treatment Capacity (1 m3/d – 50 m3/d, 50 m3/d – 150 m3/d, 150 m3/d – 500 m3/d and Above 500 m3/d), By Type (Modules, Containerized and Concrete Plants), By Region

Published Date: December - 2024 | Publisher: MIR | No of Pages: 320 | Industry: Water and Waste Management | Format: Report available in PDF / Excel Format

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Membrane Aerated Biofilm Reactor Market- Global Industry Size, Share, Trends, Opportunity, and Forecast. 2018-2028F, Segmented By Application (Municipal and Industrial), By Treatment Capacity (1 m3/d – 50 m3/d, 50 m3/d – 150 m3/d, 150 m3/d – 500 m3/d and Above 500 m3/d), By Type (Modules, Containerized and Concrete Plants), By Region

Rising Demand of Freshwater and Concern of Less Carbon Emission Driving the Market in The Future

The main factor driving the global market for membrane-aerated biofilm reactors is the concern about freshwater shortages. Governments and regulatory agencies are implementing strict regulations regarding wastewater treatment. Additionally, several governments are offering tax breaks and other incentives to encourage the use of wastewater treatment systems, in both the residential and commercial sectors. Therefore, one of the ways to prevent water pollution is to implement strict rules that encourage water conservation and the reuse of treated wastewater.

The global membrane-aerated biofilm reactor market is anticipated to experience growth over the forecast period due to increased energy efficiency, improved treatment capacity, and reduced carbon emissions from such reactors. Membrane-aerated biofilm reactors boost treatment capacity by more than 50% while consuming less energy overall. It is thus an environmentally beneficial option.

The self-respiring, spirally coiled membrane envelope at the center of Fluence's MABR passively introduces oxygen into the wastewater so that beneficial bacteria can flourish. Due to these factors, the market is likely to continue expanding in the future with a high CAGR.

Rising Government Concern and Funding Towards MABR

Membrane-aerated biofilm reactors, which have higher energy efficiency and more treatment capacity than aerobic wastewater treatment, provide more advanced water filtration. The membrane-aerated biofilm reactor technology is, therefore, receiving more significant funding through companies.

GE officially announced its innovative ZeeLung* Membrane Aerated Biofilm Reactor (MABR) technology, which is four times more energy efficient than current aeration systems and accounts for 35 percent of the energy budget of a typical municipal government in the United States.

Regulatory and governmental authorities have mandated the development of wastewater treatment systems. However, companies that require significant financial inputs are hesitant to use these systems. Thus, the global market for membrane-aerated biofilm reactors is significantly restricted by this aspect, also including the lack of infrastructure and consumer awareness.

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Market Segmentation

Market player

Major players operating in the Global Membrane Aerated Biofilm Reactor market include


MIR Segment1

Recent Developments

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Attribute

Details

Base Year

2022

Historic Data

2018– 2021

Estimated Year

2023

Forecast Period

2024 – 2028

Quantitative Units

Revenue in USD Million, value, and CAGR for 2018 -2022 and 2023 - 2028

Report coverage

Revenue forecast, Company Share, growth factors, and trends

Segments covered

By Application

By Treatment Capacity

By Type

Regional scope

North America; Asia-Pacific; Europe; South America; Middle East

Country scope

United States; Canada; Mexico; China; Indian; Japan; South Korea; Australia; Singapore; Malaysia; Germany; United Kingdom; France; Italy; Spain; Poland; Colombia; Brazil; Argentina; Peru; Chile; Africa, Saudi Arabia; South Africa; UAE; Iraq; Turkey

Key companies profiled

Suez SA, Fluence Corporation, Oxymem Limited, GENERAL ELECTRIC, Linde Engineering, Verde Environmental Group.

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