1673-159X

CN 51-1686/N

不完全再生对CDPF二次再生温度影响的实验研究

Experimental Study on the Effect of Incomplete Regeneration on the Secondary Regeneration Temperature of CDPF

  • 摘要: 催化型柴油机颗粒捕集器(CDPF)已经成为减少柴油机尾气颗粒物排放必要的后处理装置。当CDPF不完全再生时,部分颗粒未被完全氧化,CDPF再次进行颗粒捕集后,其沉积颗粒层结构发生变化,从而使得CDPF再生性能改变。本文基于热重实验台架与外加热源再生台架,首先对不同氧化程度颗粒物的氧化特性进行了分析,发现再生会降低颗粒物的燃烧指数,并增加其活化能,且颗粒物快速再生的时长会随着再生程度的增加而变长。同时实验发现,老颗粒物的存在能明显降低CDPF再生时载体内部的峰值温度。在535 ℃和500 ℃再生温度下,当老颗粒物比例为50%时,再生峰值温度下降幅度最大,最大降幅分别为306 ℃、148 ℃,但其再生效率也会降低,下降率分别为6.8%以及12.4%;再生温度为475 ℃时,因再生温度过低,各实验组均未出现峰值温度。由此可知,CDPF高温再生时可选择分次再生,以降低CDPF受到的热冲击,起到保护载体的作用。

     

    Abstract: The Catalytic Diesel Particulate Filter (CDPF) has become necessary aftertreatment devices to reduce diesel exhaust particulate matter emissions. When CDPF is not completely regenerated, some particles are not completely oxidized, and the structure of the deposited particle layer changes after CDPF is captured again, which changes the regeneration performance of CDPF. Based on the thermogravimetric experiment bench and the external heating source regeneration bench, the oxidation characteristics of particulate matter with different oxidation degrees are first analyzed, and it is found that regeneration will reduce the combustion index of particulate matter and increase its activation energy, and the rapid regeneration time of old particulate matter will increase with the increase of regeneration degree. At the same time, it was found that the presence of old particulate matter could significantly reduce the peak temperature inside the carrier during regeneration. At the regeneration temperature of 535 ℃ and 500 ℃, when the proportion of old particulate matter was 50%, the peak temperature of regeneration decreased the most, and the maximum decrease was 306 ℃ and 148 ℃,However, its regeneration efficiency will also decrease, with a decline rate of 6.8% and 12.4%, respectively. When the regeneration temperature was 475 ℃, the peak temperature did not occur due to the low regeneration temperature. It can be seen that CDPF can be regenerated in fractional times at high temperature to reduce the thermal shock of CDPF and play a protective role in the carrier.

     

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