Rise in hygiene concerns, such as air purification at crowded places and sterilizing drinking water by oxidizing all germs and bacteria and advancement in industries led to increase in the usage of ozone, which in turn increase the scope of ozone generation. Thus, expected to act as the major driving factor for the ozone generation market
Eswara Prasad, Manager, Energy and Power at Allied Market Research
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According to a new report published by Allied Market Research, titled, "Ozone Generation Market by Technology, Application, and End Use: Global Opportunity Analysis and Industry Forecast, 2020-2030," the global ozone generation market size was valued at $1.5 billion in 2020, and is projected to reach $2.5 billion by 2030, at a CAGR of 5.3% from 2021 to 2030.
Ozone, also known as trioxygen, has the chemical formula O3 and is composed of three oxygen atoms. Ozone gas is naturally unstable at normal atmospheric conditions, which means that in commercial applications, ozone must be made on-site using an ozone generator. The lifetime of ozone in water depends on various factors, including water temperature, ozone concentration, and the composition of the water itself. Although ozone does exist naturally, it is a relatively unstable and reactive gas. Therefore, ozone exists in the lower atmosphere at low concentrations. The greatest quantities of natural ozone are found at levels of up to 6 ppm (v/v) in the stratosphere, thus the term, the ozone layer. Natural production of ozone is by either UV radiation or lightning. As a commercially demanded treatment, there have been decades of R&D put into various methods of ozone industrial production. Today there are four recognized methods, such as corona discharge, ultraviolet radiation, electrolysis, and radiochemical source. In addition, Ozone is one of the most power oxidation tools used by water treatment professionals for purification and disinfection. However, rising water treatment system may act as the major driving factor for the market.
Ozone is created from Oxygen in nature and in ozone generators for commercial or industrial applications. However, ozone quickly reverts back to molecular Oxygen. Ozone cannot be stored due to a short half-life and must be produced on-site and on-demand. Therefore, the ozone generator is the most important component of any successful ozone system. Industrial and commercial ozone applications use corona discharge ozone generators, almost exclusively. .
The ozone generation market is segmented on the basis of technology, application, end use, and region. On the basis of technology, he market is classified into ultraviolet, cold plasma, corona discharge, and electrolytic. By application, it is categorized into waste water treatment, air purification, medical equipment, food & beverages, and others. On the basis of end use, it is categorized into industrial, residential, municipal, and others. Region-wise, the market is analysed across North America, Europe, Asia-Pacific, and LAMEA.
The key players profiled in this ozone generation industry report include Daikin Industries, Ltd., Evoqua Water Technologies LLC, Electrolux, Ebara Corporation, Fuji Electric Co., Ltd., Mitsubishi Electric Corporation, MKS Instruments, Teledyne Technologies, Toshiba Corporation, and Xylem.
The report focuses on the global ozone generation market analysis and the major products and applications where ozone generation are deployed. It further highlights numerous factors that influence the market growth, such as forecast, trends, drivers, restraints, opportunities, and roles of different key players that shape the market. The report focuses on the overall demand for ozone generation in various countries, presenting data in terms of both value and volume. The revenue is calculated by proliferating the volume by region-specific prices, considering the region-wise differentiated prices.
Impact Of Covid-19 On Global Ozone Generation Market
Key Findings of Study
Ozone Generation Market by Technology (Ultraviolet, Cold Plasma, Corona Discharge, and Electrolytic), Application (Waste Water Treatment, Air Purification, Medical Equipment, Food & Beverage, and Others), and End Use (Industrial, Residential, Municipal, and Others): Global Opportunity Analysis and Industry Forecast 2021–2030