Meticulous Research®—a leading global market research company, published a report titled, ‘Biological Wastewater Treatment Market by Process (Aerobic Wastewater Treatment, Anaerobic Wastewater Treatment, and Anoxic Treatment), End User (Municipal, Industrial [Food & Beverage, Pulp & Paper]), and Geography - Global Forecast to 2030.’
According to the latest publication from Meticulous Research®, the Biological Wastewater Treatment market is expected to reach $16.1 billion by 2030, at a CAGR of 5.6% during the forecast period 2023–2030. The growth of this market is attributed to the rapidly diminishing freshwater resources, the stringent government regulations for water management, and a surge in industrial water consumption and discharge. In addition, the growing demand for energy-efficient & advanced water treatment technologies, the rapidly growing population, urbanization, and industrialization, the depletion of potable water, and the increasing prevalence of water-borne diseases are expected to offer significant opportunities for the growth of this market.
However, the high installation, maintenance, and operating costs hinder the implementation of Biological Wastewater Treatment solutions. Furthermore, the high cost of upgrading & repairing aging water infrastructure is a major challenge to the market’s growth.
The Biological Wastewater Treatment market is segmented based on process and end user. The study also evaluates industry competitors and analyzes the market at the region/country level.
Based on process, the Biological Wastewater Treatment market is segmented into aerobic wastewater treatment, anaerobic wastewater treatment, and anoxic wastewater treatment. In 2023, the aerobic wastewater treatment segment is expected to account for the largest share of the Biological Wastewater Treatment market. The growth of this segment is attributed to the integration of various efficient compact technologies, such as membrane bioreactor (MBR) for municipal and industrial applications, the rising need to transform water clarification, aeration, and filtration into a simple and cost-effective process, a surge in consistent, high-quality effluent suitable for discharge or reuse, and the increasing number of stringent environmental regulations. However, the anaerobic wastewater segment is projected to register the highest CAGR during the forecast period.
Based on end user, the Biological Wastewater Treatment market is segmented into municipal and industrial. In 2023, the industrial segment is expected to account for the largest share of the market. This segment is also projected to register the highest CAGR during the forecast period. The growth of this segment is attributed to the rising focus on improving water quality from the industrial sector, rapid industrialization and urbanization, the increasing volume of contaminated wastewater, and the increasing global energy demand. In addition, the increasing prevalence of water-borne diseases, the surge in industrial demand, and the stringent governmental regulations on treating industrial wastewater also support the growth of this market segment.
Based on geography, the Biological Wastewater Treatment market is segmented into North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. In 2023, North America is expected to account for the largest share of the market. The growth of this regional market is attributed to the growing manufacturing sector, supportive government initiatives, such as Zero Liquid Discharge, to promote water reuse & recycling, the stringent regulations for the safe & appropriate use of onsite wastewater treatment systems, and the increasing advancements in wastewater treatment technologies. However, the market in Asia-Pacific is projected to register the highest CAGR during the forecast period.
The key players operating in the Biological Wastewater Treatment market are Veolia Environment S.A. (France), Suez Environment S.A. (France), Xylem, Inc. (U.S.), Aquatech International (U.S.), Ecolab, Inc. (U.S.), Pentair Plc. (U.S.), Samco Technologies, Inc. (U.S.), DAS Environment Expert GmbH (Germany), Calgon Carbon Corporation (U.S.), Evoqua Water Technologies LLC (U.S.), Condorchem Envitech, S.L. (Spain), United Utilities Group PLC (U.K.), Aqwise (U.S.), RF Wastewater (U.S.), Oxygen Solutions (U.S.), 3M Company, Inc. (U.S.), Entex Technologies (U.S.), Envirocare (U.S.), HUBER SE (Germany), and Bluewater Bio Limited (U.K.).
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