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Investigation of NOx- and PM-reduction by a Combination of SCR-catalyst and Diesel Particulate Filter for Heavy-duty Diesel Engine

机译:SCR催化剂与柴油机微粒过滤器组合还原NOx和PM的研究

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The upcoming Euro VI emission legislation for Heavy Duty Diesel engines can be complied with by using a combination of a wall flow DPF and a UREA SCR-system. This paper describes investigations of NO_x and PM reduction by a combination of SCR-catalyst and an (uncoated) Diesel particulate filter (DPF), performed on a fully transient heavy-duty test bench. Soot loading and passive regeneration of the DPF for different configurations of both components and active regeneration by fuel injection into the exhaust gas line were investigated. The impact of DPF on SCR-catalyst as well as SCR-catalyst impact on DPF was analyzed in terms of NO_x-conversion and regeneration efficiency of the filter under steady-state and transient operating conditions.The NCvconversions for the configuration SCR-catalyst in front of DPF were higher for all operating conditions than for the combination DPF in front of SCR-catalyst. This was due to higher temperatures and higher NO_2-to-NO_xratios in front of the SCR-catalyst. On the other hand, passive regeneration of the filter in this configuration was poor under certain operating conditions due to low concentrations of NO_2 in front of the DPF. For the combination DPF in front of SCR-catalyst, passive regeneration of the filter was sufficient in a wide range of the operating conditions.
机译:结合使用壁流式DPF和UREA SCR系统,可以符合即将颁布的重型柴油发动机的欧VI排放法规。本文介绍了在完全瞬态重型测试台上进行的SCR催化剂和(未涂覆的)柴油机微粒过滤器(DPF)组合对NO_x和PM还原的研究。研究了两种成分不同配置的DPF的烟尘负载和被动再生,以及通过向排气管线中喷射燃料进行的主动再生。从稳态和瞬态运行条件下过滤器的NO_x转化率和再生效率的角度分析了DPF对SCR催化剂的影响以及SCR催化剂对DPF的影响。在所有操作条件下,DPF的比值都比SCR催化剂前的DPF组合要高。这是由于SCR催化剂前的温度较高和NO_2至NO_xratios较高。另一方面,由于DPF前面的NO_2浓度低,在某些操作条件下,此配置中过滤器的被动再生效果很差。对于SCR催化剂前的DPF组合,在广泛的运行条件下,过滤器的被动再生就足够了。

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