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Review of Vehicular Emissions Trends

机译:车辆排放趋势回顾

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This review paper summarizes major developments in vehicular emissions regulations and technologies from 2014. The paper starts with the key regulatory advancements in the field, including newly proposed Non-Road Mobile Machinery regulations for 2019-20 in Europe, and the continuing developments towards real driving emissions (RDE) standards. An expert panel in India proposed a roadmap through 2025 for clean fuels and tailpipe regulations. LD (light duty) and HD (heavy-duty) engine technology continues showing marked improvements in engine efficiency. Key developments are summarized for gasoline and diesel engines to meet both the emerging NOx and GHG regulations. HD engines are demonstrating more than 50% brake thermal efficiency using methods that can reasonably be commercialized. Next, NOx control technologies are summarized, including SCR (selective catalytic reduction), lean NOx traps, and combination systems. Emphasis is on durability and control. Diesel PM (particulate matter) reduction findings are evolving around the behavior of the soot cake and PM sensors. Gasoline particulates are further described and gasoline particulate filter regeneration is now better understood. Oxidation catalysts mainly involve developments towards stubborn problems, like sulfur tolerance, low-temperature performance with exhaust with high hydrocarbon and CO, and methane oxidation. Finally, the paper discusses some key developments in gasoline gaseous emission control, focusing on meeting new regulatory requirements in the US, durability, and on lean burn gasoline emissions control.
机译:这篇综述文章总结了2014年以来车辆排放法规和技术的主要发展。本文从该领域的主要法规进展入手,包括新提议的2019-20年欧洲非道路移动机械法规以及朝着真实驾驶的持续发展排放(RDE)标准。印度的一个专家小组提出了到2025年的清洁燃料和排气管法规路线图。 LD(轻型)和HD(重型)发动机技术继续显示出发动机效率的显着提高。总结了汽油和柴油发动机满足新兴的NOx和GHG法规的关键发展。 HD引擎使用合理的商业化方法展示了超过50%的制动热效率。接下来,总结了NOx控制技术,包括SCR(选择性催化还原),稀薄的NOx捕集阱和组合系统。重点是耐用性和控制力。柴油机PM(颗粒物)减少的发现围绕着烟灰饼和PM传感器的行为而发展。进一步描述了汽油颗粒,现在人们对汽油颗粒过滤器的再生有了更好的了解。氧化催化剂主要涉及顽固性问题的发展,例如耐硫性,含高碳氢化合物和一氧化碳的废气的低温性能以及甲烷氧化。最后,本文讨论了汽油气态排放控制的一些关键发展,重点是满足美国新的法规要求,耐久性以及稀薄燃烧汽油排放控制。

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