Gasoline Particulate Filter with Membrane Technology to Achieve the Tight PN Requirement

压力降 稳健性(进化) 汽油 微粒 工程类 化学 物理 废物管理 机械 生物化学 基因 有机化学
作者
Shogo Obata,Yasuyuki Furuta,Tatsuya Ōhashi,Takashi Aoki
出处
期刊:SAE technical paper series 被引量:1
标识
DOI:10.4271/2023-01-0394
摘要

<div class="section abstract"><div class="htmlview paragraph">The LDV gasoline emission regulation is set to be tightened for Euro7. In particular, the particulate number (PN) requirement has been significantly tightened requiring a GPF with extra - high filtration efficiency to meet the target requirement.</div><div class="htmlview paragraph">In order to meet the stricter PN requirements, GPF substrate material improvement is necessary. However, conventional GPF material improvement for high filtration efficiency will increase the filter backpressure significantly. The relationship between pressure drop and CO<sub>2</sub> emission is difficult to quantify but high pressure drop can potentially increase the CO<sub>2</sub> emission. Therefore, Membrane Technology (MT) is the key to break through the trade-off between filtration performance and pressure drop. MT is thin and dense layer of small grains applied on the GPF surface. MT application can increase particulate filtration efficiency significantly with minimal pressure drop increase. To make MT work effectively, membrane conditions need to be optimized. In addition, the effect of each condition on GPF filtration performance needs to be verified.</div><div class="htmlview paragraph">On the other hand, it is also important to maintain GPF filtration performance, membrane durability and robustness under all GPF operating conditions and Full Useful Life of the vehicle. In order to achieve the membrane durability and robustness, membrane grains need to be adhered to the GPF surface and GPF performance needs to be evaluated for all GPF operating conditions.</div><div class="htmlview paragraph">This paper shows the results of membrane technology optimization for maximizing GPF performance, particulate filtration performance of GPF with MT, and the durability performance of MT.</div></div>
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