Liquid-mediated particle capture by nonwoven filter media for automotive engine intake air filtration

过滤(数学) 重量分析 材料科学 压力降 复合材料 聚丙烯 粒子(生态学) 色谱法 化学工程 化学 机械 地质学 工程类 物理 海洋学 有机化学 统计 数学
作者
Shivendra Kumar Yadav,Dipayan Das
出处
期刊:Journal of Industrial Textiles [SAGE Publishing]
卷期号:51 (4_suppl): 5658S-5682S 被引量:3
标识
DOI:10.1177/15280837211061022
摘要

This article reports on development, characterization, and performance of liquid-treated nonwoven air filter media for automotive engine intake application. A polypropylene fiber-based needle-punched nonwoven fabric was prepared for treatment with four viscous liquids (glycerol, SAE 20W/50 engine oil, PEG 400, and deionized water) by liquid spraying technique. The filtration performance was evaluated in terms of initial and final gravimetric filtration efficiencies, fractional filtration efficiency, evolution of pressure drop, and dust holding capacity. The liquid-treated filter media registered higher gravimetric as well as fractional filtration efficiency and higher dust holding capacity as compared to the untreated ones. The initial and final gravimetric filtration efficiencies were found to be directly related to liquid add-on via a power law relationship. The liquid-treated filter media also exhibited higher fractional filtration efficiency than their untreated counterparts for all sizes of tested particles. Interestingly, the increase of fractional efficiency was more for smaller particles as compared to larger ones. This was explained quantitatively through single fiber efficiency due to adhesion. The viscosity of liquid was found to be a very crucial parameter as the dust deposition morphology was contingent to the flow of liquid onto the filter media. The stickiest liquid yielded highest filtration efficiencies, displayed slowest rise of pressure drop, and exhibited highest dust holding capacity.

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