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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Modelling of passive ammonia selective catalytic reduction system for lean-burn spark ignition direct injection engines
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Modelling of passive ammonia selective catalytic reduction system for lean-burn spark ignition direct injection engines

机译:稀薄燃烧火花点火直喷发动机的被动氨选择性催化还原系统建模

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Lean-burn spark ignition direct injection (SIDI) engines offer potential fuel economy savings; however, the lack of simple and cost-effective lean nitrogen oxide (NOx) aftertreatment systems hinder their broad application. Lean NOx traps (LNT) and urea selective catalytic reduction (SCR) catalysts have been widely investigated as possible lean gasoline aftertreatment technologies, but with limited acceptance. Passive ammonia SCR operation is a promising low-cost alternative for lean NOx aftertreatment with SIDI engines. The aftertreatment system includes close-coupled three-way catalyst (TWC) converters and one or more under-floor SCR catalysts. Ammonia (NH3) is formed on the TWC with short pulses of rich engine operations and the generated NH3 is then stored on the under-floor SCR catalysts. During subsequent lean operations, the NOx that breaks through the TWC converters is reduced to nitrogen by NH3 stored on the SCR catalysts. This paper provides an overview of system level analysis as a complement to experimental testing in the development of a passive NH3 SCR-based aftertreatment system. Various aftertreatment architectures (SCR type, the order, and location of the catalysts) were efficiently evaluated and screened, to achieve the best trade-off between engine back-pressure, catalyst warm-up, emission constraints, and acceptable thermal ageing under high-speed/load conditions.
机译:稀燃火花点火直接喷射(SIDI)发动机可节省燃料。但是,由于缺乏简单且经济高效的稀薄氮氧化物(NO x )后处理系统,阻碍了它们的广泛应用。稀薄的NO x 捕集阱(LNT)和尿素选择性催化还原(SCR)催化剂已被广泛研究为可能的贫汽油后处理技术,但接受程度有限。被动氨SCR操作是使用SIDI发动机进行NO x 稀燃NO后处理的有前途的低成本替代方案。该后处理系统包括紧密耦合的三元催化器(TWC)转换器和一种或多种地板下SCR催化剂。氨(NH 3 )以短脉冲在发动机浓空燃比条件下在TWC上形成,然后将生成的NH 3 存储在地板下SCR催化剂上。在随后的稀燃操作中,突破TWC转化器的NO x 被SCR催化剂上存储的NH 3 还原为氮气。本文概述了系统级分析,作为基于NH 3 SCR的后处理系统开发中实验测试的补充。有效地评估和筛选了各种后处理结构(SCR类型,催化剂的顺序和位置),以在发动机背压,催化剂预热,排放限制以及在高温条件下可接受的热老化之间取得最佳平衡。速度/负载条件。

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