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Impact of high sulfur fuel and de-sulfation process on a close-coupled diesel oxidation catalyst and diesel particulate filter

机译:高硫燃料和脱硫工艺对紧密耦合柴油机氧化催化剂和柴油机颗粒过滤器的影响

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The application of more stringent emission regulations for passenger cars in Asian and South American countries is challenging due to the presence of low-quality diesel fuel, which enhances the risk of deactivation of aftertreatment systems due to its higher sulfur content. In this context, the impact of high sulfur fuel on the performance of a close-coupled Diesel Oxidation Catalyst (DOC) and Diesel Particulate Filter (DPF) was experimentally tested for degreened, sulfated and de-sulfated real size aftertreatment components, through engine tests carried out on a highly-dynamic engine test rig, allowing to reproduce the transient operation of the engine and of the aftertreatment system during type approval driving cycles. In order to assess the impact of sulfur poisoning, a specific poisoning procedure was adopted which resulted in different sulfur poisoning levels. The impact of different space velocities on degreened, poisoned and de-sulfated system was examined and compared considering light-off curves for CO and HC. The poisoned system was found to be worst effected due to increasing space velocities. In addition, the ability to recover the performance of aftertreatment system after regeneration through a proper de-sulfation strategy was evaluated with respect to fresh, degreened, catalyst. The aftertreatment system recovered its efficiency almost completely after the de-sulfation procedure was carried out. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于存在劣质柴油,在亚洲和南美国家对乘用车实施更严格的排放法规具有挑战性,由于其较高的硫含量会增加后处理系统失活的风险。在此背景下,通过发动机测试,通过实验测试了高硫燃料对紧密耦合的柴油氧化催化剂(DOC)和柴油颗粒过滤器(DPF)性能的影响,以进行分级,硫酸化和脱硫的实际尺寸后处理组件的试验。在高度动态的发动机试验台上进行,从而可以在型式认可行驶周期中重现发动机和后处理系统的瞬态运行。为了评估硫中毒的影响,采用了特定的中毒程序,导致了不同程度的硫中毒。考虑到CO和HC的起燃曲线,研究并比较了不同空速对分级,中毒和脱硫系统的影响。人们发现,由于空间速度的增加,中毒系统的影响最差。另外,针对新鲜的,分级的催化剂,评估了通过适当的脱硫策略在再生后通过再生策略恢复后处理系统性能的能力。进行脱硫程序后,后处理系统几乎完全恢复了效率。 (C)2017 Elsevier Ltd.保留所有权利。

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