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Continuous regeneration of an electrically heated diesel particulate trap: mechanism of particulate matter trapping and improvement of trapping efficiency

机译:电加热柴油机颗粒捕集器的连续再生:颗粒物捕集的机理和捕集效率的提高

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摘要

The mechanisms of trapping and continuous regeneration of soot particles in a newly developed diesel particulate trap based on static-electric trapping (electrical diesel particulate trap, E-DPT) are investigated. It is found from a visualization experiment that soot particles trapped on the electro-plates form soot bridges over the 1.5 mm narrow space between the electro-plates and burn out by Joule's heating, due to the direct electrification through the bridges. The burning soot bridges trigger the burning of soot particles deposited throughout the electro-plates, achieving continuous regeneration. An experiment on the effect of particle charging on trapping efficiency showed that particle charging by corona discharge increases soot bridge formation, leading to a dramatic increase in soot trapping efficiency from 45 per cent for the case without particle charging to 85 per cent with particle charging. Size distribution measurements showed that the accumulation mode particles are trapped efficiently, but soot particles smaller than 80 nm increase at the exit of the E-DPT.
机译:研究了新开发的基于静电捕集的柴油机微粒捕集器(电柴油微粒捕集器,E-DPT)中烟灰微粒的捕集和连续再生机理。从可视化实验中发现,捕获在电板上的烟尘颗粒在电板之间的1.5毫米狭窄空间上形成了烟灰桥,由于通过电桥的直接带电,焦耳加热将其燃烧掉。燃烧的煤烟桥触发沉积在整个电镀板上的煤烟颗粒燃烧,从而实现连续再生。一项关于粒子带电对捕集效率的影响的实验表明,通过电晕放电产生的粒子带电会增加烟灰桥的形成,从而导致烟灰捕集效率从不带电的情况下的45%急剧增加到带电的情况下的85%。尺寸分布测量表明,聚集模式颗粒被有效地捕获,但小于80 nm的烟灰颗粒在E-DPT的出口处增加。

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