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Solid Selective Catalytic Reduction: A Promising Approach towards Reduction of NOx Emission from Exhaust of CI Engines

机译:固体选择性催化还原:减少CI发动机排放量减少NOx排放的有希望的方法

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The rising rate of pollution in urban areas has become a worldwide concern in recent years. Diesel engines are considered one of the largest contributors to environmental pollution caused by exhaust emissions, and they are responsible for several health problems as well. Diesel engines contain carbon monoxide, carbon dioxide, unburned hydrocarbons, and oxides of nitrogen. The reduction of Nitric oxides (NOx) emission from diesel engine exhaust is currently being researched by automotive manufacturers. After much research, selective catalytic reduction (SCR) technology was discovered to be effective in reducing nitrogen oxide emission from diesel engine exhaust. This paper is an attempt to explore the problems associated with the use of selective catalytic reduction (SCR) and compares selective catalytic reduction (SCR) with the latest technology named solid selective catalytic reduction (SSCR) for efficient reduction of NOx emission from the exhaust of diesel engines. The issue of contamination, malfunctioning, and freezing of diesel exhaust fluid (DEF) at low temperatures are the major problems associated with the application of SCR. It is observed that by controlling the quantity of ammonia slip, SSCR can give better performance in the reduction of NOx emission from the exhaust of diesel engines.
机译:近年来,城市地区的污染率升高已成为全球关注。柴油发动机被认为是废物排放造成的环境污染的最大贡献者之一,也负责几个健康问题。柴油发动机含有一氧化碳,二氧化碳,未燃烧的碳氢化合物和氮的氧化物。目前正在研究柴油发动机排气的一氧化氮(NOx)排放的氧化氮(NOx)排放由汽车制造商研究。经过多次研究,发现选择性催化还原(SCR)技术可有效降低柴油发动机排气的氮氧化物排放。本文试图探讨与使用选择性催化还原(SCR)相关的问题,并将选择性催化还原(SCR)与最新的技术称为固体选择性催化还原(SSCR)进行了用于有效降低排气的NOx排放柴油发动机。低温下柴油排气流体(DEF)污染,故障和冷冻的问题是与SCR应用相关的主要问题。观察到,通过控制氨湿的量,SSCR可以在柴油发动机排气的降低中提供更好的性能。

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