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An Analysis of Exhaust Emission of the Internal Combustion Engine Treated by the Non-Thermal Plasma

机译:非热等离子体处理内燃机废气排放分析

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摘要

Industries’ air pollution causes serious challenges to modern society, among them exhaust gases from internal combustion engines, which are currently one of the main sources. This study proposes a non-thermal plasma (NTP) system for placement in the exhaust system of internal combustion engines to reduce the toxic contaminants (HC, CO, and NOx) of exhaust gases. This NTP system generates a high-voltage discharge that not only responds to the ion chemical reaction to eliminate NOx and CO, but that also generates a combustion reaction at the local high temperature of plasma to reduce HC. The NTP system was designed on both the front and rear of the exhaust pipe to analyze the difference of different exhaust flow rates under the specified frequency. The results indicate that the NTP system can greatly reduce toxic contaminants. The NTP reactor placed in the front of exhaust pipe gave HC and CO removal efficiency of about 34.5% and 16.0%, respectively, while the NTP reactor placed in the rear of exhaust pipe gave NOx removal efficiency of about 41.3%. In addition, the voltage and material directly affect the exhaust gases obviously. In conclusion, the proposed NTP system installed in the exhaust system can significantly reduce air pollutants. These results suggest that applying NTP to the combustion engine should be a useful tool to simultaneously reduce both emissions of NOx and CO.
机译:行业的空气污染导致现代社会的严重挑战,其中包括内燃机的废气,目前是主要来源之一。该研究提出了一种用于放置在内燃机的排气系统中的非热等离子体(NTP)系统,以减少废气的有毒污染物(HC,CO和NOx)。该NTP系统产生高压放电,该高压放电不仅响应离子化学反应而消除NOx和CO,而且还产生在局部高温下的燃烧反应以减少HC。 NTP系统在排气管的前后设计,以分析指定频率下不同的排气速率的差异。结果表明,NTP系统可以大大减少毒性污染物。置于排气管前面的NTP反应器分别置于HC和CO除去效率,分别为约34.5%和16.0%,而放置在排气管后部的NTP反应器产生NOx的去除效率约为41.3%。此外,电压和材料明显地直接影响废气。总之,安装在排气系统中的提出的NTP系统可以显着减少空气污染物。这些结果表明,将NTP应用于内燃机应该是同时减少NOx和CO的排放的有用工具。

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