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What Will Nitrogen Oxide Control Systems Market Look Like In The Future? Top Companies are Babcock & Wilcox, CECO Environmental, Fuel Tech, Honeywell, HAMON, Siemens
The global Nitrogen oxide control system market size was valued at $4.3 billion in 2020, and is estimated to reach $7.3 billion by 2030, growing at a CAGR of 5.4% from 2021 to 2030.A nitrogen oxide (NOx) control system refers to a collection of technologies and strategies used to reduce the emissions of nitrogen oxides, which are harmful pollutants produced during combustion processes in vehicles, industrial facilities, and power plants. Nitrogen oxides contribute to air pollution, smog formation, acid rain, and various respiratory and environmental problems.
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Effective control of NOx emissions requires control on both stationary sources and mobile transport sources. Each requires different strategies. This guideline focuses on control strategies for stationary sources (primarily fossil-fuel-fired electricity-generating plants).
The key players profiled in this report include Babcock & Wilcox Enterprises, Inc., CECO Environmental, Ducon Technologies Inc., Fuel Tech, Honeywell International Inc., John Wood Group plc, Mitsubishi Hitachi Power Systems, Ltd., S.A. HAMON, Siemens AG and The Shell Group.
Some control systems are combustion control, choice of fuel, process modification, reburning, low NOx burners, flue gas recirculation (FGR), staged combustion (off-stoichiometric combustion), reduced air preheat & reduced firing rates, water or steam injection, low-excess-air firing (LEA), flue gas treatment, selective catalytic reduction (SCR), and selective non-catalytic reduction (SNCR).
As per the technology product, the Low NOx Burner segment emerged as the global leader in 2020 and is anticipated to be the largest markets during the forecast period.
On the basis of application, industrial segment emerged as the global leader in 2020 and is anticipated to be the largest market during the forecast period.
Nitrogen oxide is a gaseous air pollutant composed of nitrogen and oxygen. NOx forms when fossil fuels such as coal, oil, gas, or diesel are burned at high temperatures.
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Combustion Modifications: Adjusting combustion parameters, such as air-to-fuel ratio and burner design, can lead to lower temperatures in combustion processes. Lower temperatures can reduce the formation of nitrogen oxides.
Selective Catalytic Reduction (SCR): In SCR, a reductant (usually ammonia or urea) is injected into the exhaust stream. This reductant reacts with nitrogen oxides over a catalyst, converting them into nitrogen and water. SCR is commonly used in power plants and heavy-duty diesel engines.
Selective Non-Catalytic Reduction (SNCR): Similar to SCR, SNCR involves injecting a reductant (like ammonia or urea) into the combustion chamber or post-combustion zone. However, SNCR doesn't use a catalyst and relies on high temperature conditions to promote the reduction of nitrogen oxides.
Exhaust Gas Recirculation (EGR): EGR involves recirculating a portion of exhaust gases back into the combustion chamber. This dilutes the oxygen concentration, leading to lower combustion temperatures and reduced NOx formation.
Asia-pacific registered the highest market share and is projected to maintain the same during the forecast period.
NO2 and other nitrogen oxides in the outdoor air contribute to particle pollution and to the chemical reactions that make ozone. It is one of six widespread air pollutants that have national air quality standards to limit them in the outdoor air.
Cars, trucks, and buses are the largest sources of emissions, followed by power plants, diesel-powered heavy construction equipment, and other movable engines and industrial boilers.
COVID-19 impacted almost all industries by hindering various industrial operations and disrupting the supply chain. Maximum companies halted their operation due to less workforce. However, there is a sluggish decline in the global nitrogen oxide control systems market due to impact of COVID-19.
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Furthermore, import and export activities were significantly impacted, which, in turn, adversely affected the industries using nitrogen oxide control systems and thereby affecting the global nitrogen oxide control systems market.
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