Nuclear air filtration market size is anticipated to exhibit potential growth from 2016 to 2023. Rising safety concerns regarding emission of radioactive particles is expected to drive industry growth over the forecast period, with the global industrial air filtration market size expected to exceed USD 6.7 billion by 2023.
Nuclear power plant and equipment market is likely to exceed USD 67.3 billion by 2020. These systems play vital role in nuclear power plants, as it completely relies on proficient filtration of water, air as well as process fluids for efficient operation. Proliferating demand of these filters from nuclear industries is estimated to positively impact nuclear air filtration market growth. In addition, implementation of these filters also aids in enhancing reliability and also assures safety.
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North America nuclear air filtration market is anticipated to witness significant growth U.S. is projected to positively impact the industry growth owing to presence of large number of nuclear power industries in the region. Countries such as France, Japan, South Korea, Russia, UK, Ukraine, Germany, Sweden, China and India are estimated to pose huge industry potential for the filters over the forecast period.
Key industry players occupying major nuclear air filtration market share include, Camfill Farr Air Filters, Freudenberg & Co. KG, AAF International, Flanders Corporation, Vokes-Air Group, SPX Corporation, Midwesco Filter Resources, Inc., Cambridge Filter Corporation (kondoh) EMCEL Filters Ltd and CLARCOR Inc. A.L.Filter, Aerospace America Inc., Hollingsworth & Vose Company, LLC, Waltz-Holst Blow Pipe Co., Superior Fibers, Sogefi SpA, Trion Inc., Lydall, Inc., Pall Corporation, 3M Company, Air Filter Service Company, UCI-FRAM Group, Mann Hummel, Purafil, Inc., and Ahlstrom.
Nuclear air filtration market mainly involves the proficient use of pre-filters, carbon filters and High Efficiency Particulate Air (HEPA) filters. HEPA filters market furnishes high efficiency and exhibit high potential to eliminate contaminants, droplets, and sub-micron sized particles employing diffusion techniques and advanced particle attraction. It has a tendency to remove over 99.97% of air pollutants. These filters are likely to incarcerate harmful particles way before the air reaches the final filtration. Thus, it also aids in escalating the product life cycle.
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In addition, these filters are also used for removal of various bacteria, viruses, asthma triggers and allergens such as mold, pet dander, pollen and dust mites. Carbon filters are also being significantly used in various applications to remove airborne chemicals, including organic acids, alcohols, aldehydes, ethers, chlorinated hydrocarbons, esters, halogens, ketones, sulphur dioxide, phosgene and sulphuric acid among numerous others. It also helps in removing odour from animals and humans.
Furthermore, it is projected to be successful in sanitizing household chemicals, perfumes and also in eradicating volatile organic compounds (VOCs). Air purifiers with different kind of activated carbon are estimated to gain significance as they are treated with various chemicals to filter specific noxious aerosol compounds. However, many air filters now contain both HEPA as well as carbon filters to achieve better output. Pre-filters are mainly used to provide high resistance to the air flow and ensure controlled flow of air through the filtration system. It also aids in extending the life of HEPA filters, as it does not allow the fibres and large particles to enter the air filtration system.
Flourishing integration of these filters in nuclear installations namely fuel processing installations, waste management, power generation units, and nuclear energy research facilities are anticipated to fuel the industry demand over several forth coming years. Rising emergence of nuclear industry globally is estimated to surge the growth of nuclear associated industries as well as nuclear facilities which is turn is likely to fuel the industry demand for these filters. Strong focus on nuclear, biological and chemical (NBC) air filtration systems market should also support industry development.
In addition, stringent regulatory norms for nuclear industries regarding diminishing radioactive air pollution in numerous nations are projected to boost the industry growth. Optimized implementation of these filters enables in preventing the release of radioactive material. Industrial operations such as chemical extraction, separation, or fixation along with mechanical operations are likely to surge the nuclear air filtration market growth. Moreover, air filtration systems are likely to use of low-efficiency filters to avoid contaminants prior to letting the air reach the ultimate filtration stage, thus enhancing product life.
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