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An Overview of Lean Exhaust deNOx Aftertreatment Technologies and NOx Emission Regulations in the European Union

机译:欧盟贫民排气后处理技术及NOx排放规定概述

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摘要

This paper reviews the recent advances in the management of nitrogen oxide (NOx) emissions from the internal combustion engine of light-duty and heavy-duty vehicles, addressing both technical and legal aspects. Particular focus is devoted to the often-virtuous interaction between new legislation imposing more restrictions on the permitted pollutant emission levels and new technologies developed in order to meet these restrictions. The review begins first with the American and then European directives promulgated in the 1970s, aimed at limiting emissions of pollutants from road transport vehicles. Particular attention is paid to the introduction of the Euro standards in the European Union for light- and heavy-duty vehicles, used as a legal and time frame reference for the evolution of emission aftertreatment systems (ATSs). The paper also describes governmental approaches implemented for the control of pollutant emissions in circulating vehicles, such as market surveillance and in-service conformity. In parallel, it is explained how the gradual introduction of small-scale devices aimed at the NOx control, such as lean NOx traps (LNTs) systems, and, most of all, the selective catalytic reduction (SCR) of NOx, permitted the application to road-transport vehicles of this ATS, originally designed in larger sizes for industrial usage. The paper reviews chemical processes occurring in SCR systems and their advantages and drawbacks with respect to the pollutant emission limits imposed by the legislation. Their potential side effects are also addressed, such as the emission of extra, not-yet regulated pollutants such as, for example, NH3 and N2O. The NOx, N2O, and NH3 emission level evolution with the various Euro standards for both light- and heavy-duty vehicles are reported in the light of experimental data obtained at the European Commission’s Joint Research Centre. It is observed that the new technologies, boosted by increasingly stricter legal limits, have led in the last two decades to a clear decrease of over one order of magnitude of NOx emissions in Diesel light-duty vehicles, bringing them to the same level as Euro 6 gasoline vehicles (10 mg/km to 20 mg/km in average). On the other hand, an obvious increase in the emissions of both NH3 and N2O is observed in both Diesel and gasoline light-duty vehicles, whereby NH3 emissions in spark-ignition vehicles are mainly linked to two-reaction mechanisms occurring in three-way catalysts after the catalyst light-off and during engine rich-operation. NH3 emissions measured in recent Euro 6 light-duty vehicles amount to a few mg/km for both gasoline and Diesel engines, whereby N2O emissions exceeding a dozen mg/km have been observed in Diesel vehicles only. The present paper can be regarded as part of a general assessment in view of the next EU emission standards, and a discussion on the role the SCR technology may serve as a NOx emission control strategy from lean-burn vehicles.
机译:本文综述了借助诸如技术和法律方面的内燃机的氮氧化物(NOx)排放的最新进展,解决了技术和法律方面。特别重点致力于新立法之间的经常良性互动,对允许的污染物排放水平和开发的新技术施加更多限制,以满足这些限制。审查首先与美国颁布的美国人,然后在20世纪70年代颁布的欧洲指令,旨在限制公路运输车辆的污染物排放。特别注意欧洲联盟的欧元标准的推出,用作排放后处理系统(ATSS)演变的法律和时间框架参考。本文还介绍了为控制循环车辆污染物排放而实施的政府办法,如市场监督和妥善符合行为。并行地说明了如何逐步引入旨在NOx控制的小型装置,例如瘦NOx陷阱(LNT)系统,以及NOx的最重要的,最重要的是NOx的选择性催化还原(SCR)这款ATS的公路运输车辆,最初设计以较大的工业用途尺寸。纸质评论在SCR系统中发生的化学过程及其优点和缺点关于立法所施加的污染物排放限制。还解决了它们的潜在副作用,例如排放额外的,但不受调节的污染物,例如NH3和N2O。根据在欧盟委员会联合研究中心获得的实验数据,报告了具有各种欧元标准的NOx,N2O和NH3排放水平演化。据指出,新技术因越来越严格的法律限制而推动,在过去二十年中导致了在柴油轻型车辆中的一大阶数减少了一定程度上的减少,使它们与欧元相同6汽油车(平均10毫克/ km至20毫克/ km)。另一方面,在柴油和汽油型车辆中观察到NH 3和N2O的发射的明显增加,从而火花点火车辆中的NH3排放主要与三元催化剂发生的两次反应机制有关在催化剂亮相和发动机富型操作期间。 NH3在近6欧元6欧元的汽油和柴油发动机中测量的NH3排放量为汽油和柴油发动机的几毫克/公里,从而仅在柴油车辆中观察到超过十几种Mg / Km的N2O排放。本文可以视为鉴于下一个欧盟排放标准的一般评估的一部分,并就SCR技术的作用讨论可以作为贫燃燃烧车辆的NOx排放控制策略。

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