Effect analysis on passive and active regeneration performance of catalytic diesel particulate filters at the equilibrium point in the presence of ash layer

IF 1.6 4区 工程技术 Q3 ENGINEERING, CHEMICAL Canadian Journal of Chemical Engineering Pub Date : 2024-05-09 DOI:10.1002/cjce.25302
Chao Zhong, Shaoli Wang, Bo Chen, Guohai Jia, Chenxi Wu, Hongyan Zuo
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Abstract

Catalytic diesel particulate filters (CDPF) form the main post-processing devices for the diesel engines. Particulates trapped by CDPF can be oxidized by nitrogen dioxide (NO2) and oxygen (O2). The CDPF passive and active regeneration model on platinum-based catalyst in the presence of ash layer, including the mass, momentum, and enthalpy balances of the gas and the solid phase, the gas diffusion, and the kinetic of the soot oxidation reaction is performed and validated by the bench test. The effects of different temperatures on CDPF passive and active regeneration at the equilibrium point are analyzed. Further, the effective analysis of ash loading and ash layer distribution on the equilibrium state is conducted. The research on CDPF passive and active regeneration at the equilibrium point in the presence of ash layer provides a theoretical basis for CDPF application.

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存在灰层时催化式柴油微粒滤清器在平衡点的被动和主动再生性能的影响分析
催化柴油微粒过滤器(CDPF)是柴油发动机的主要后处理装置。被 CDPF 捕获的微粒可被二氧化氮(NO2)和氧气(O2)氧化。本研究建立了铂基催化剂在灰层存在下的 CDPF 被动和主动再生模型,包括气相和固相的质量、动量和焓平衡、气体扩散和烟尘氧化反应动力学,并通过台架试验进行了验证。分析了不同温度对平衡点上 CDPF 被动再生和主动再生的影响。此外,还分析了装灰量和灰层分布对平衡状态的有效影响。对有灰层存在时 CDPF 在平衡点上的被动再生和主动再生的研究为 CDPF 的应用提供了理论依据。
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来源期刊
Canadian Journal of Chemical Engineering
Canadian Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
3.60
自引率
14.30%
发文量
448
审稿时长
3.2 months
期刊介绍: The Canadian Journal of Chemical Engineering (CJChE) publishes original research articles, new theoretical interpretation or experimental findings and critical reviews in the science or industrial practice of chemical and biochemical processes. Preference is given to papers having a clearly indicated scope and applicability in any of the following areas: Fluid mechanics, heat and mass transfer, multiphase flows, separations processes, thermodynamics, process systems engineering, reactors and reaction kinetics, catalysis, interfacial phenomena, electrochemical phenomena, bioengineering, minerals processing and natural products and environmental and energy engineering. Papers that merely describe or present a conventional or routine analysis of existing processes will not be considered.
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