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Reduction of diesel engine exhaust emissions using non-thermal plasma technology

机译:使用非热等离子体技术减少柴油机废气排放

摘要

Non-thermal plasma (NTP) is a promising candidate for controlling engine exhaust emissions. Plasma is known as the fourth state of matter, where both electrons and positive ions co-exist. Both gaseous and particle emissions of diesel exhaust undergo chemical changes when they are exposed to plasma. In this project diesel particulate matter (DPM) mitigation from the actual diesel exhaust by using NTP technology has been studied. The effect of plasma, not only on PM mass but also on PM size distribution, physico-chemical structure of PM and PM removal mechanisms, has been investigated. It was found that NTP technology can significantly reduce both PM mass and number. However, under some circumstances particles can be formed by nucleation. Energy required to create the plasma with the current technology is higher than the benchmark set by the commonly used by the automotive industry. Further research will enable the mechanism of particle creation and energy consumption to be optimised.
机译:非热等离子体(NTP)是控制发动机废气排放的有前途的候选者。等离子体被称为物质的第四种状态,电子和正离子会同时存在。当柴油机废气暴露于等离子体中时,其气体排放和颗粒排放都会发生化学变化。在该项目中,已经研究了使用NTP技术缓解实际柴油机废气中的柴油机颗粒物(DPM)。已经研究了等离子体的影响,不仅对PM质量,而且对PM尺寸分布,PM的物理化学结构和PM去除机理也有影响。发现NTP技术可以显着减少PM的数量和数量。但是,在某些情况下,可以通过成核形成颗粒。用当前技术产生等离子体所需的能量高于汽车工业通常使用的基准设定。进一步的研究将使微粒产生和能量消耗的机制得到优化。

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    Babaie Meisam;

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  • 年度 2015
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