Experimental Study on the Influence of DPF Micropore Structure and Particle Property on Its Filtration Process

IF 1.5 Q3 ENGINEERING, CHEMICAL Journal of Combustion Pub Date : 2016-12-22 DOI:10.1155/2016/9612856
Zhongwei Meng, Jia Fang, Yunfei Pu, Yan Yan, Yi Wu, Yong Wang, Q. Song
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引用次数: 16

Abstract

A single layer filtration system was developed to investigate the filtration and regeneration performance of diesel particle filter (DPF). The particle layer thickness was directly measured online to analyze the different filtration stages. The influence of particle property on particle layer stage performance was also investigated. The results indicate that the filtration velocity can greatly affect the deep bed filtration stage, and the deposited particle layer can be compressed even in very low filtration velocity and higher filtration velocity trends to form denser particle layer. Optimizing the pore structure can effectively shorten the deep bed filtration stage and reduce the pressure drop eventually. An empirical function was proposed to relate the pore structure and the initial increment rate of pressure drop, which presented that reducing the pore size distribution range ( ) can result in low DPF filtration pressure drop. The filtration stage could be further divided into four stages, and the value of particle layer thickness ranging within 15~20 μm has been found to be critical number for the shift from the transient stage to the cake filtration stage. Particle with large primary diameter and BET surface was beneficial to form loose particle layer.
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DPF微孔结构及颗粒性质对其过滤过程影响的实验研究
为研究柴油颗粒过滤器(DPF)的过滤和再生性能,研制了一种单层过滤系统。直接在线测量颗粒层厚度,分析不同过滤阶段的过滤效果。研究了颗粒性能对颗粒层阶段性能的影响。结果表明:过滤速度对深床过滤阶段影响较大,即使在极低过滤速度和较高过滤速度趋势下,沉积的颗粒层也会被压缩,形成更致密的颗粒层。优化孔隙结构可以有效缩短深层过滤阶段,最终降低压降。提出了孔隙结构与压降初始增量率之间的经验函数,表明减小孔径分布范围()可以降低DPF过滤压降。过滤阶段可进一步划分为4个阶段,颗粒层厚度在15~20 μm范围内是由瞬态过渡到饼状过滤阶段的临界数值。颗粒初生直径大、BET表面大有利于颗粒层的松散形成。
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来源期刊
Journal of Combustion
Journal of Combustion ENGINEERING, CHEMICAL-
CiteScore
2.00
自引率
28.60%
发文量
8
审稿时长
20 weeks
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