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Biological Wastewater Treatment Market Report

RA00163

Biological Wastewater Treatment Market, by Process Type (Aerobic, Anaerobic), End Use (Municipal, Industrial (Pulp & Paper, Meat & Poultry, Chemicals, Pharmaceuticals, Others), Regional Outlook (North America, Europe, Asia-Pacific, and LAMEA): Global Opportunity Analysis and Industry Forecast, 2019-2026

RA00163

Pages: 130

Mar 2020

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Impact of covid-19 on Biological Wastewater Treatment Market

Global Market Insights of Biological wastewater treatment, 2026:

Biological wastewater treatment market size accounted for $7.6 Million in 2018 and is predicted to grow with a CAGR of 5.4% over the forecast period. Rise in industrialization and government initiatives for conserving water are factors that will drive the biological wastewater treatment market. North America region for biological wastewater treatment market accounted for $2.5 Million in 2018 and is predicted to grow with a CAGR of 4.6% over the forecast period.

Biological wastewater treatment uses natural process to help in the decomposition of organic substances in water. Biological wastewater treatment depends on nematodes, bacteria and other small organisms which break down organic wastes with the help of cellular processes. The main aim of biological wastewater treatment is to create a system resulting in the decomposition of the wastewater which can be easily collected for disposal and reuse. Biological Wastewater Treatment is used mostly in every country as it is more effective and economical than any other chemical and mechanical processes.

Driving Factors: Increasing industrialization and government initiatives are predicted to drive the growth of the biological wastewater treatment market

Rise in industrialization and government initiatives for conserving water are predicted to be the major driving factors for the growth of the biological wastewater treatment market. Many of the industries require water in huge amounts for day to day operations. Usage of fresh water can create a scarcity in water for the population. With the help of biological wastewater treatment, industries can reuse water over and over again for operational work. These factors are responsible for increasing in industrialization leading to major biological wastewater treatment market growth. In addition, with rise in population, the demand for water increases. Government taking several initiatives for cleaning the water due to the increase in the population is predicted to be one of the driving factors for the market.

Market Restraint: The costs involved for proper disposal of contaminated water are very high, which is predicted to hamper the growth of the market

The cost for the treatment of waste water is high, which is predicted to hamper the growth of the market. A lot of operational cost, sludge movement cost and other possible costs are included in purifying water, which is the biggest restraint for the market. In addition, biological waste water treatment provides a variety of solutions to meet the needs but it requires sufficient amount of space for storing gallons of water and the machinery to setup. The cost and space involved in the setup is considered to hinder the market growth over the forecast period.

Biological Wastewater Treatment Market, By Process:

Aerobic process segment in Biological Wastewater Treatment Market is foreseen to have the maximum growth across the globe. Aerobic process segment accounted for $3.6 Million in 2018 and is predicted to grow with a CAGR of 6.5% over the forecast period. Aerobic segment is predicted to grow as it is mostly used to clean industrial wastewater to reuse, ensuring that the wastewater is fully degraded and safely discharged for use as per the government regulations. Aerobic process is used in various industries like food and beverages, chemical and other manufacturing industries.

Biological Wastewater Treatment Market, By End Use:

The industrial end use segment is predicted to have the maximum share over the forecast period. Industrial end use segment accounted for $3.9 Million in 2018 and is predicted to grow with a CAGR of 4.2% over the forecast period. The industrial end use segment is further segmented into pulp & paper, meat & poultry, chemicals, pharmaceuticals and others. As most of the industries use biological wastewater treatment for their day to day operation, it is predicted to boost the overall market growth over the forecast period

Biological Wastewater Treatment Market, By Region:

North America market is predicted to have the highest share in the forecast period. North America region for biological wastewater treatment market accounted for $2.5 Million in 2018 and is predicted to grow with a CAGR of 4.6% over the forecast period. North America market is predicted to grow due to the presence of large number of companies using wastewater treatment. Asia-Pacific region for biological wastewater treatment market accounted for $1.9 Million in 2018 and is predicted to grow with a CAGR of 6.1% over the forecast period. The Asia-Pacific region market is predicted to grow with the rising economy and the investment made by the companies to setup their unit in the region.

Key participants in the Biological Wastewater Treatment Market:

The biological wastewater treatment market players include 3M, Calgon Carbon Corporation, Aquatech International LLC, Evoqua Water Technologies LLC, Pentair plc, Veolia, Ecolab, Xylem and SUEZ among others.

Porter’s Five Forces Analysis for Biological Wastewater Treatment Market:

  • Bargaining Power of Suppliers: The switching cost from one supplier to another is projected to be low.

The bargaining power of suppliers is very Low.

  • Bargaining Power of Consumers: In this market, the concentration of buyers is High.

The bargaining power of consumers is Low.

  • The threat of New Entrants: Huge initial investments are essential to start a new biological wastewater treatment system.

The threat of new entrants is High.

  • The threat of Substitutes: This market has a numerous alternative of products; moreover, technology also offers high switching costs for clients.

The threat of substitutes is High.

  • Competitive Rivalry in the Market: The biological wastewater treatment has numerous small, medium and large-scale players. Many major players are following several business strategies and product differentiation among them. The competitive rivalry in the industry is High.

Aspect

Particulars

Historical Market Estimations

2018-2019

Base Year for Market Estimation

2018

Forecast timeline for Market Projection

2019-2026

Geographical Scope

North America, Europe, Asia-Pacific, LAMEA

Segmentation by Type

  • Aerobic

  • Anaerobic

Segmentation by Application

  • Municipal

  • Industrial

    • Pulp & Paper

    • Meat & Poultry

    • Chemicals

    • Pharmaceuticals

    • Others

Key Countries Covered

U.S., Canada, Mexico, Germany, France, UK, Italy, Spain, Russia, Rest of Europe, China, Japan, India, Australia, South Korea, Rest of Asia-Pacific, Brazil, Saudi Arabia, United Arab Emirates, Rest of LAMEA

Key Companies Profiled

  • 3M

  • Calgon Carbon Corporation,

  • Aquatech International LLC

  • Evoqua Water Technologies LLC,

  • Pentair plc

  • Veolia

  • Ecolab

  • Xylem

  • SUEZ


FREQUENTLY ASKED QUESTIONS?
 

A. The global Biological Wastewater Treatment Market size was over $7.6 million in 2018, and is predicted to grow with a CAGR of 5.4% over the forecast period.

A. Xylem and SUEZ are some of the key players in the global Biological Wastewater Treatment Market.

A. Asia-Pacific possesses great investment opportunities for the investors to witness the most promising growth in the coming years.

A. Asia-Pacific biological wastewater treatment market is projected to grow at 6.1% CAGR during the forecast period.

A. Product development is the key strategies opted by the operating companies in this Biological Wastewater Treatment Market.

A. 3M is the company investing more on R&D activities for developing new products and technologies.

1.Research Methodology

1.1.Desk Research
1.2.Real time insights and validation
1.3.Forecast model
1.4.Assumptions and forecast parameters

1.4.1.Assumptions
1.4.2.Forecast parameters

1.5.Data sources

1.5.1.Primary
1.5.2.Secondary

2.Executive Summary

2.1.360° summary
2.2.Process type trends
2.3.End use trends

3.Market overview

3.1.Market segmentation & definitions
3.2.Key takeaways

3.2.1.Top investment pockets
3.2.2.Top winning strategies

3.3.Porter’s five forces analysis

3.3.1.Bargaining power of consumers
3.3.2.Bargaining power of suppliers
3.3.3.Threat of new entrants
3.3.4.Threat of substitutes
3.3.5.Competitive rivalry in the market

3.4.Market dynamics

3.4.1.Drivers
3.4.2.Restraints
3.4.3.Opportunities

3.5.Technology landscape
3.6.Regulatory landscape
3.7.Patent landscape
3.8.Pricing overview

3.8.1.By Process Type 
3.8.2.By End Use

3.9.Market value chain analysis
3.10.Strategic overview

4.Biological Wastewater Treatment Market, by Process Type 

4.1.Aerobic

4.1.1.Market size and forecast, by region, 2018-2026
4.1.2.Comparative market share analysis, 2018 & 2026

4.2.Anaerobic

4.2.1.Market size and forecast, by region, 2018-2026
4.2.2.Comparative market share analysis, 2018 & 2026

5.Biological Wastewater Treatment Market, By End use

5.1.Municipal

5.1.1.Market size and forecast, by region, 2018-2026
5.1.2.Comparative market share analysis, 2018 & 2026

5.2.Industrial

5.2.1.Market size and forecast, by region, 2018-2026
5.2.2.Comparative market share analysis, 2018 & 2026
5.2.3.Pulp & Paper

5.2.3.1.Market size and forecast, by region, 2018-2026
5.2.3.2.Comparative market share analysis, 2018 & 2026

5.2.4.Meat & Poultry

5.2.4.1.Market size and forecast, by region, 2018-2026
5.2.4.2.Comparative market share analysis, 2018 & 2026

5.2.5.Chemicals

5.2.5.1.Market size and forecast, by region, 2018-2026
5.2.5.2.Comparative market share analysis, 2018 & 2026

5.2.6.Pharmaceuticals

5.2.6.1.Market size and forecast, by region, 2018-2026
5.2.6.2.Comparative market share analysis, 2018 & 2026

5.2.7.Others

5.2.7.1.Market size and forecast, by region, 2018-2026
5.2.7.2.Comparative market share analysis, 2018 & 2026

6.Biological Wastewater Treatment Market, by region

6.1.North America

6.1.1.Market size and forecast, by Process type , 2018-2026
6.1.2.Market size and forecast, By End use, 2018-2026
6.1.3.Market size and forecast, by country, 2018-2026
6.1.4.Comparative market share analysis, 2018 & 2026
6.1.5.U.S.

6.1.5.1.Market size and forecast, by Process type , 2018-2026
6.1.5.2.Market size and forecast, By End use, 2018-2026
6.1.5.3.Comparative market share analysis, 2018 & 2026

6.1.6.Canada

6.1.6.1.Market size and forecast, by Process type , 2018-2026
6.1.6.2.Market size and forecast, By End use, 2018-2026
6.1.6.3.Comparative market share analysis, 2018 & 2026

6.1.7.Mexico

6.1.7.1.Market size and forecast, by Process type , 2018-2026
6.1.7.2.Market size and forecast, By End use, 2018-2026
6.1.7.3.Comparative market share analysis, 2018 & 2026

6.2.Europe

6.2.1.Market size and forecast, by Process type , 2018-2026
6.2.2.Market size and forecast, By End use, 2018-2026
6.2.3.Market size and forecast, by country, 2018-2026
6.2.4.Comparative market share analysis, 2018 & 2026
6.2.5.Germany 

6.2.5.1.Market size and forecast, by Process type , 2018-2026
6.2.5.2.Market size and forecast, By End use, 2018-2026
6.2.5.3.Comparative market share analysis, 2018 & 2026

6.2.6.UK

6.2.6.1.Market size and forecast, by Process type , 2018-2026
6.2.6.2.Market size and forecast, By End use, 2018-2026
6.2.6.3.Comparative market share analysis, 2018 & 2026

6.2.7.France

6.2.7.1.Market size and forecast, by Process type , 2018-2026
6.2.7.2.Market size and forecast, By End use, 2018-2026
6.2.7.3.Comparative market share analysis, 2018 & 2026

6.2.8.Spain

6.2.8.1.Market size and forecast, by Process type , 2018-2026
6.2.8.2.Market size and forecast, By End use, 2018-2026
6.2.8.3.Comparative market share analysis, 2018 & 2026

6.2.9.Italy 

6.2.9.1.Market size and forecast, by Process type , 2018-2026
6.2.9.2.Market size and forecast, By End use, 2018-2026
6.2.9.3.Comparative market share analysis, 2018 & 2026

6.2.10.Rest of Europe

6.2.10.1.Market size and forecast, by Process type , 2018-2026
6.2.10.2.Market size and forecast, By End use, 2018-2026
6.2.10.3.Comparative market share analysis, 2018 & 2026

6.3.Asia Pacific

6.3.1.Market size and forecast, by Process type , 2018-2026
6.3.2.Market size and forecast, By End use, 2018-2026
6.3.3.Market size and forecast, by country, 2018-2026
6.3.4.Comparative market share analysis, 2018 & 2026
6.3.5.China

6.3.5.1.Market size and forecast, by Process type , 2018-2026
6.3.5.2.Market size and forecast, By End use, 2018-2026
6.3.5.3.Comparative market share analysis, 2018 & 2026

6.3.6.India 

6.3.6.1.Market size and forecast, by Process type , 2018-2026
6.3.6.2.Market size and forecast, By End use, 2018-2026
6.3.6.3.Comparative market share analysis, 2018 & 2026

6.3.7.Australia 

6.3.7.1.Market size and forecast, by Process type , 2018-2026
6.3.7.2.Market size and forecast, By End use, 2018-2026
6.3.7.3.Comparative market share analysis, 2018 & 2026

6.3.8.Rest of Asia Pacific

6.3.8.1.Market size and forecast, by Process type , 2018-2026
6.3.8.2.Market size and forecast, By End use, 2018-2026
6.3.8.3.Comparative market share analysis, 2018 & 2026

6.4.LAMEA

6.4.1.Market size and forecast, by Process type , 2018-2026
6.4.2.Market size and forecast, By End use, 2018-2026
6.4.3.Market size and forecast, by country, 2018-2026
6.4.4.Comparative market share analysis, 2018 & 2026
6.4.5.Latin America  

6.4.5.1.Market size and forecast, by Process type , 2018-2026
6.4.5.2.Market size and forecast, By End use, 2018-2026
6.4.5.3.Comparative market share analysis, 2018 & 2026

6.4.6.Middle East 

6.4.6.1.Market size and forecast, by Process type , 2018-2026
6.4.6.2.Market size and forecast, By End use, 2018-2026
6.4.6.3.Comparative market share analysis, 2018 & 2026

6.4.7.Africa

6.4.7.1.Market size and forecast, by Process type , 2018-2026
6.4.7.2.Market size and forecast, By End use, 2018-2026
6.4.7.3.Comparative market share analysis, 2018 & 2026

7.Company profiles

7.1.3M

7.1.1.Business overview
7.1.2.Financial performance
7.1.3.Product portfolio
7.1.4.Recent strategic moves & developments
7.1.5.SWOT analysis

7.2.Calgon Carbon Corporation

7.2.1.Business overview
7.2.2.Financial performance
7.2.3.Product portfolio
7.2.4.Recent strategic moves & developments
7.2.5.SWOT analysis

7.3.Aquatech International LLC

7.3.1.Business overview
7.3.2.Financial performance
7.3.3.Product portfolio
7.3.4.Recent strategic moves & developments
7.3.5.SWOT analysis

7.4.Evoqua Water Technologies LLC

7.4.1.Business overview
7.4.2.Financial performance
7.4.3.Product portfolio
7.4.4.Recent strategic moves & developments
7.4.5.SWOT analysis

7.5.Pentair plc

7.5.1.Business overview
7.5.2.Financial performance
7.5.3.Product portfolio
7.5.4.Recent strategic moves & developments
7.5.5.SWOT analysis

7.6.Veolia

7.6.1.Business overview
7.6.2.Financial performance
7.6.3.Product portfolio
7.6.4.Recent strategic moves & developments
7.6.5.SWOT analysis

7.7.Ecolab

7.7.1.Business overview
7.7.2.Financial performance
7.7.3.Product portfolio
7.7.4.Recent strategic moves & developments
7.7.5.SWOT analysis

7.8.Xylem

7.8.1.Business overview
7.8.2.Financial performance
7.8.3.Product portfolio
7.8.4.Recent strategic moves & developments
7.8.5.SWOT analysis

7.9.SUEZ

7.9.1.Business overview
7.9.2.Financial performance
7.9.3.Product portfolio
7.9.4.Recent strategic moves & developments
7.9.5.SWOT analysis

 

Biological wastewater treatment is an essential step to cleanse and purify domestic or industrial wastewater. It is the Secondary Treatment process because it is generally used to eradicate any remaining impurities after the primary treatment is done. The biological wastewater treatment process uses microorganisms such as bacteria, protozoa, fungi, algae, and nematodes to destroy wastewater pollutants. Based on the process, biological treatment of waste water methods are mainly divided into two types. They are:

  1. Aerobic Treatment which needs oxygen1.

  2. Anaerobic Treatment which requires oxygen-free environment

Growth drivers of the biological wastewater treatment market
The increasing industrialization and government initiatives for preserving water are going to be the major growth drivers of the biological wastewater treatment market in the upcoming years. Many of the industries require water in huge amounts for day to day operations. With the help of biological wastewater treatment, industries can use the biodegradable water over and over again for operational needs. In addition, the demand for water has been increased owing to the rising population. Governments are taking several initiatives and introducing policies for cleaning the water and preserve it for future. Biological Wastewater Treatment is used mostly in every country as it is more effective and economical than any other chemical and mechanical processes.

Recent News/ Product Launches

According to a recent report, the major players of the biological wastewater treatment market include Calgon Carbon Corporation, 3M, Evoqua Water Technologies LLC, Aquatech International LLC, Pentair plc, Ecolab, Veolia, SUEZ, and Xylem among others. 

These market players are adopting several strategies including new technology, new product launches, current technology upgradation, and merger and acquisition to gain highest biological wastewater treatment market size. Here’s a few news vignettes:

  • According to recent news, a new wastewater treatment system has been developed by an interdisciplinary team headed by the University of Hong Kong (HKU). This novel system can not only eliminate the conventional impurities effectively, but can recover valuable resources such as phosphorus and organic materials such as carbon fibers and impulsive organic acids.

This novel system combines chemically enhanced primary sedimentation (CEPS) of sewage with acidogenic fermentation of sludge in tandem. 

  • Another news reveals that the final stages of SA Water's upgrade to the Murray Bridge wastewater network are ongoing including construction of a new wastewater treatment plant. The wastewater treatment plant at Brinkley which was began in October 2018 is a large part of the $52 million project. 

Process testing has already begun and solar panels are being installed at the treatment plant site, and it is expected to start operations within a few months. Another interesting fact of the treatment plant is that it is a part of the wider local sewer system and it has the capacity of treating an extra two million liters of sewage in one day.

Mergers and Acquisition

  • Evoqua Water Technologies signed a decisive agreement to acquire privately held Environmental Treatment Systems Inc. An engineered solutions provider to the industrial wastewater market based in Acworth, Georgia, Environmental Treatment Systems’ industrial offerings serve the pulp and paper, food processing, chemical, beverage, poultry and meat processing, laundry, and textile industries. 

  • AquaVenture Holdings Limited, a water treatment solutions company has announced recently that its Seven Seas Water business has completed the acquisition of all the outstanding shares of Aguas de Bayovar S.A.C. The cumulative purchase price for the acquisition was around $46 million.

  • Aquarius Technologies LLC, a newly launched company has purchased Aquarius Technologies Inc., by the president and CEO, Deborah LaVelle. The objective of the purchase was to meet the growing need for water and wastewater treatment solutions around the world. The new company will focus on the growth and development of its Multi-Stage Fixed Biofilm treatment system, while continuing sales of its diffused aeration systems, manufactured by the US. 

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