Biological Wastewater Treatment Market - Global Size, Share, Trend Analysis, Opportunity and Forecast Report, 2019–2029, Segmented By Process (Aerobic, Anaerobic); By End-use Industry (Municipal, Industrial); By Region (North America, Europe, Asia Pacific

Biological Wastewater Treatment Market - Global Size, Share, Trend Analysis, Opportunity and Forecast Report, 2019–2029, Segmented By Process (Aerobic, Anaerobic); By End-use Industry (Municipal, Industrial); By Region (North America, Europe, Asia Pacific, Latin America, Middle East and Africa)


Global Biological Wastewater Treatment Market Size Set to Touch USD 13.6 Billion by 2029
Global biological wastewater treatment market is flourishing because of an increasing industrial water consumption and discharge, rapid infrastructure development, water scarcity, and reusability of water.
BlueWeave Consulting, a leading strategic consulting and market research firm, in its recent study, estimated the global biological wastewater treatment market size at USD 9.22 billion in 2022. During the forecast period between 2023 and 2029, BlueWeave expects the global biological wastewater treatment market size to grow at a CAGR of 6.04% reaching a value of USD 13.59 billion by 2029. Major growth drivers for the global biological wastewater treatment market include an increasing industrial water consumption and discharge, declining availability of freshwater, strict regulations regarding wastewater treatment & management and rapid urbanization & industrialization. There is a growing awareness of water pollution, which, combined with a rising demand for energy-efficient water treatment technologies, fuels the need for advanced wastewater treatment solutions. Also, the scarcity of safe drinking water and the increasing prevalence of water-borne diseases create favorable opportunities for the expansion of the biological wastewater treatment market during the forecast period. However, high maintenance and operational costs and decreasing capital funding are anticipated to restrain the overall market growth.

Global Biological Wastewater Treatment Market – Overview
The global biological wastewater treatment market refers to the industry and market sector that involves the treatment of wastewater using biological processes and technologies. It encompasses various methods, such as the use of microorganisms to break down organic matter and remove pollutants from wastewater. Biological wastewater treatment is considered a sustainable and environmentally friendly approach to wastewater management, aiming to reduce the negative impact of wastewater on the environment and public health. The market includes technology providers, equipment manufacturers, engineering firms, and consulting services that offer a range of products and services for the biological treatment of wastewater in various sectors, including municipal, industrial, and agricultural wastewater treatment.

Impact of COVID-19 on Global Biological Wastewater Treatment Market
COVID-19 pandemic had a positive impact on the global biological wastewater treatment market. Within the realm of wastewater, untreated contaminants, such as antibiotics, pharmaceutical waste, nano-plastics, and pesticides, posed serious health risks. In response to the pandemic, hospitals were compelled to adopt advanced wastewater treatment methods to contain the spread of infection. Biological wastewater treatment plants with multiple disinfection barriers became increasingly prevalent in isolation wards and quarantine centers throughout the pandemic. These factors had a positive influence on the growth of the Biological Wastewater Treatment market. Moreover, the COVID-19 pandemic highlighted the importance of proper and advanced wastewater treatment in hospitals as a means to control the transmission of infections. Consequently, decentralized wastewater treatment plants with multiple disinfection barriers were installed in quarantine centers and isolation wards during the pandemic. Hence, the COVID-19 pandemic had a positive impact on the biological wastewater treatment market.
Global Biological Wastewater Treatment Market – By Process
By process, the global biological wastewater treatment market is bifurcated into Aerobic and Anaerobic segments. The aerobic wastewater treatment segment is expected dominate the market share in the biological wastewater treatment market during the forecast period. This growth can be attributed to several factors, including the rising volume of wastewater requiring discharge or reuse, the increasing demand for streamlined and cost-effective water clarification, aeration, and filtration processes, and the integration of efficient compact technologies like membrane bioreactors (MBRs) for both municipal and industrial applications. However, it is important to note that the anaerobic wastewater treatment segment is expected to record growth at a higher CAGR during the forecast period. This indicates a significant potential for expansion and adoption of anaerobic treatment methods in wastewater treatment processes.

Competitive Landscape
Major players operating in the global biological wastewater treatment market include 3M, Calgon Carbon Corporation, Aquatech International LLC, Evoqua Water Technologies LLC, Pentair Plc., Veolia, Ecolab, Xylem, SUEZ, Dryden Aqua Ltd., Samco Technologies, Inc., and DAS Environmental Expert GmbH. To further enhance their market share, these companies employ various strategies, including mergers and acquisitions, partnerships, joint ventures, license agreements, and new product launches.

The in-depth analysis of the report provides information about growth potential, upcoming trends, and statistics of Global Biological Wastewater Treatment Market. It also highlights the factors driving forecasts of total market size. The report promises to provide recent technology trends in Global Biological Wastewater Treatment Market and industry insights to help decision-makers make sound strategic decisions. Furthermore, the report also analyzes the growth drivers, challenges, and competitive dynamics of the market.


1. Research Framework
1.1. Research Objective
1.2. Product Overview
1.3. Market Segmentation
2. Executive Summary
3. Global Biological Wastewater Treatment Market Insights
3.1. Industry Value Chain Analysis
3.2. DROC Analysis
3.2.1. Growth Drivers
3.2.1.1. Aging Infrastructure, Water Scarcity, & Reusability of Water
3.2.1.2. Increase in Industrial Water Consumption and Discharge
3.2.2. Restraints
3.2.2.1. High Maintenance and Operational Costs
3.2.2.2. Decreasing Capital Funding
3.2.3. Opportunity
3.2.3.1. Rising Demand of sustainable, energy efficient, and advanced wastewater treatment technologies
3.2.3.2. Smart Metering & Data Analysis
3.2.4. Challenges
3.2.4.1. High energy consumption & environmental Footprint
3.3. Technological Advancements/Recent Developments
3.4. Regulatory Framework
3.5. Porter’s Five Forces Analysis
3.5.1. Bargaining Power of Suppliers
3.5.2. Bargaining Power of Buyers
3.5.3. Threat of New Entrants
3.5.4. Threat of Substitutes
3.5.5. Intensity of Rivalry
4. Global Biological Wastewater Treatment Market Overview
4.1. Market Size & Forecast by Value, 2019–2029
4.1.1. By Value (USD Billion)
4.2. Market Share & Forecast
4.2.1. By Process
4.2.1.1. Aerobic
4.2.1.2. Anaerobic
4.2.2. By End-use Industry
4.2.2.1. Municipal
4.2.2.1.1. Residential
4.2.2.1.2. Public Utilities
4.2.2.2. Industrial
4.2.2.2.1. Pulp & Paper
4.2.2.2.2. Meat & Poultry
4.2.2.2.3. Chemicals
4.2.2.2.4. Pharmaceuticals
4.2.2.2.5. Others (Textiles, Diary, Breweries, Oil & Gas, Metal)
4.2.3. By Region
4.2.3.1. North America
4.2.3.2. Europe
4.2.3.3. Asia Pacific (APAC)
4.2.3.4. Latin America (LATAM)
4.2.3.5. Middle East and Africa (MEA)
5. North America Biological Wastewater Treatment Market
5.1. Market Size & Forecast by Value, 2019–2029
5.1.1. By Value (USD Billion)
5.2. Market Share & Forecast
5.2.1. By Process
5.2.2. By End-use Industry
5.2.3. By Country
5.2.3.1. United States
5.2.3.1.1. By Process
5.2.3.1.2. By End-use Industry
5.2.3.2. Canada
5.2.3.2.1. By Process
5.2.3.2.2. By End-use Industry
6. Europe Biological Wastewater Treatment Market
6.1. Market Size & Forecast by Value, 2019–2029
6.1.1. By Value (USD Billion)
6.2. Market Share & Forecast
6.2.1. By Process
6.2.2. By End-use Industry
6.2.3. By Country
6.2.3.1. Germany
6.2.3.1.1. By Process
6.2.3.1.2. By End-use Industry
6.2.3.2. United Kingdom
6.2.3.2.1. By Process
6.2.3.2.2. By End-use Industry
6.2.3.3. Italy
6.2.3.3.1. By Process
6.2.3.3.2. By End-use Industry
6.2.3.4. France
6.2.3.4.1. By Process
6.2.3.4.2. By End-use Industry
6.2.3.5. Spain
6.2.3.5.1. By Process
6.2.3.5.2. By End-use Industry
6.2.3.6. Belgium
6.2.3.6.1. By Process
6.2.3.6.2. By End-use Industry
6.2.3.7. Russia
6.2.3.7.1. By Process
6.2.3.7.2. By End-use Industry
6.2.3.8. The Netherlands
6.2.3.8.1. By Process
6.2.3.8.2. By End-use Industry
6.2.3.9. Rest of Europe
6.2.3.9.1. By Process
6.2.3.9.2. By End-use Industry
7. Asia-Pacific Biological Wastewater Treatment Market
7.1. Market Size & Forecast by Value, 2019–2029
7.1.1. By Value (USD Billion)
7.2. Market Share & Forecast
7.2.1. By Process
7.2.2. By End-use Industry
7.2.3. By Country
7.2.3.1. China
7.2.3.1.1. By Process
7.2.3.1.2. By End-use Industry
7.2.3.2. India
7.2.3.2.1. By Process
7.2.3.2.2. By End-use Industry
7.2.3.3. Japan
7.2.3.3.1. By Process
7.2.3.3.2. By End-use Industry
7.2.3.4. South Korea
7.2.3.4.1. By Process
7.2.3.4.2. By End-use Industry
7.2.3.5. Australia & New Zealand
7.2.3.5.1. By Process
7.2.3.5.2. By End-use Industry
7.2.3.6. Indonesia
7.2.3.6.1. By Process
7.2.3.6.2. By End-use Industry
7.2.3.7. Malaysia
7.2.3.7.1. By Process
7.2.3.7.2. By End-use Industry
7.2.3.8. Singapore
7.2.3.8.1. By Process
7.2.3.8.2. By End-use Industry
7.2.3.9. Vietnam
7.2.3.9.1. By Process
7.2.3.9.2. By End-use Industry
7.2.3.10. Rest of APAC
7.2.3.10.1. By Process
7.2.3.10.2. By End-use Industry
8. Latin America Biological Wastewater Treatment Market
8.1. Market Size & Forecast by Value, 2019–2029
8.1.1. By Value (USD Billion)
8.2. Market Share & Forecast
8.2.1. By Process
8.2.2. By End-use Industry
8.2.3. By Country
8.2.3.1. Brazil
8.2.3.1.1. By Process
8.2.3.1.2. By End-use Industry
8.2.3.2. Argentina
8.2.3.2.1. By Process
8.2.3.2.2. By End-use Industry
8.2.3.3. Peru
8.2.3.3.1. By Process
8.2.3.3.2. By End-use Industry
8.2.3.4. Rest of LATAM
8.2.3.4.1. By Process
8.2.3.4.2. By End-use Industry
9.Middle East & Africa Biological Wastewater Treatment Market
9.1. Market Size & Forecast by Value, 2019–2029
9.1.1. By Value (USD Billion)
9.2. Market Share & Forecast
9.2.1. By Process
9.2.2. By End-use Industry
9.2.3. By Country
9.2.3.1. Saudi Arabia
9.2.3.1.1. By Process
9.2.3.1.2. By End-use Industry
9.2.3.2. UAE
9.2.3.2.1. By Process
9.2.3.2.2. By End-use Industry
9.2.3.3. Qatar
9.2.3.3.1. By Process
9.2.3.3.2. By End-use Industry
9.2.3.4. Kuwait
9.2.3.4.1. By Process
9.2.3.4.2. By End-use Industry
9.2.3.5. South Africa
9.2.3.5.1. By Process
9.2.3.5.2. By End-use Industry
9.2.3.6. Nigeria
9.2.3.6.1. By Process
9.2.3.6.2. By End-use Industry
9.2.3.7. Algeria
9.2.3.7.1. By Process
9.2.3.7.2. By End-use Industry
9.2.3.8. Rest of MEA
9.2.3.8.1. By Process
9.2.3.8.2. By End-use Industry
10. Competitive Landscape
10.1. List of Key Players and Their Offerings
10.2. Global Biological Wastewater Treatment Company Market Share Analysis, 2021
10.3. Competitive Benchmarking, By Operating Parameters
10.4. Key Strategic Development (Mergers, Acquisitions, Partnerships, etc.)
11. Impact of Covid-19 on Global Biological Wastewater Treatment Market
12. Company Profile (Company Overview, Financial Matrix, Competitive landscape, Key Personnel, Key Competitors, Contact Address, and Strategic Outlook)
12.1. 3M
12.2. Calgon Carbon Corporation,
12.3. Aquatech International LLC
12.4. Evoqua Water Technologies LLC
12.5. Pentair Plc.
12.6. Veolia
12.7. Ecolab
12.8. Xylem
12.9. SUEZ
12.10. Dryden Aqua Ltd.
12.11. Samco Technologies, Inc.
12.12. DAS Environmental Expert GmbH
12.13. Other Prominent Companies
13. Key Strategic Recommendations
14. Research Methodology
14.1. Qualitative Research
14.1.1. Primary & Secondary Research
14.2. Quantitative Research
14.3. Market Breakdown & Data Triangulation
14.3.1. Secondary Research
14.3.2. Primary Research
14.4. Breakdown of Primary Research Respondents, By Region
14.5. Assumption & Limitation

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