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Investigations on Chemical Ageing of Diesel Oxidation Catalysts and Coated Diesel Particulate Filters

机译:柴油氧化催化剂和涂层柴油微粒过滤器化学老化的研究

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For medium and heavy duty diesel engines, the development of new catalyst technologies and particulate filters is necessary to fulfill increasingly stringent emission regulations. An important aspect is the durability of the after-treatment system and therefore its efficiency over lifetime. Lubrication oil additives contain components such as phosphorous or zinc to ensure engine durability. Diesel oxidation catalyst (DOC) and coated diesel particulate filter (cDPF) catalytic coatings are negatively influenced by contamination on the surface with these components (chemical ageing). The components have a negative impact on the exhaust after-treatment systems performance. Additionally the cDPF is filled with oil ash. Engine tests are conducted to analyze the effect of lubrication oil additives on after-treatment system performance. In one study, lubrication oil with increased sulphur ash content is used. In another study, the same liquid oil is additionally sprayed directly into the after-treatment system. The performance of both after-treatment systems is measured at regular intervals during testing. The results show that the NO_2-make on DOC and cDPF deteriorates severely due to chemical and thermal ageing. However with increased operation time, the effects stabilize. In addition to the test bench investigations, the accumulation of poisoning elements on the washcoat surface is analyzed using XRF-analysis. Ash accumulation in the cDPF is studied and ash composition is analyzed. Selected results of this study are compared to results of measurements on durability run aged after-treatment systems from EPA'07 development [1].
机译:对于中型和重型柴油发动机,为了满足日益严格的排放法规,必须开发新的催化剂技术和微粒过滤器。一个重要方面是后处理系统的耐用性,因此是整个使用寿命的效率。润滑油添加剂包含磷或锌等成分,以确保发动机耐用性。柴油氧化催化剂(DOC)和涂层柴油机微粒过滤器(cDPF)催化涂层受到这些成分在表面上的污染的不利影响(化学老化)。这些组件会对排气后处理系统的性能产生负面影响。另外,cDPF充满了油灰。进行发动机测试以分析润滑油添加剂对后处理系统性能的影响。在一项研究中,使用了具有增加的硫灰分含量的润滑油。在另一项研究中,相同的液态油还直接喷入后处理系统中。在测试过程中,定期测量两个后处理系统的性能。结果表明,由于化学和热老化,DOC和cDPF上的NO_2生成严重恶化。但是,随着操作时间的增加,效果会趋于稳定。除了进行试验台调查外,还使用XRF分析法分析了载体涂层表面中毒元素的积累。研究了cDPF中的灰分积累并分析了灰分组成。将本研究的选定结果与EPA'07开发的耐用性老化后处理系统的测量结果进行比较[1]。

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