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Dual Layer Coated High Porous SiC - A New Concept for SCR Integration into DPF

机译:双层涂层高多孔SiC - SCR集成到DPF的新概念

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The integration of DeNO_x functionality into wall flow filters for the after treatment of diesel engine exhaust gases is a field of technology to which many publications in the recent years have drawn their attention. To integrate the needed amount of catalyst, high porous substrate materials have been developed. A drawback of the high porosity levels of 60% and higher is a significant reduction in mechanical strength. The aim of this work is to provide a new solution based on a high porous SiC material which is treated by a dual layer coating. The first layer is a nanoparticle coating which enhances the mechanical strength of the substrate. It can also be used to improve the catalytic performance and to finally decrease the loading of the second coating layer which is the active catalyst for selective catalytic reduction (SCR) of NO_x with ammonia. Three different types of catalysts have been investigated as the second layer: a Fe-β-zeolite, a mixed metal oxide based on ceria and zirconia and a composition based on titania and vanadia. The impact on the pore structure and the resulting back pressure was investigated as well as the SCR functionality. The results demonstrate that the combination of the initial nanoparticle layer with the different catalyst layers has led to high SCR efficiencies at low catalyst loadings. Engine bench tests on filters in the size of 5.66″×8″ have been performed to verify the high particle number (PN) filtration efficiency which is required for Euro 6/VI applications and the NO_x reduction efficiency by using a diesel oxidation catalyst (DOC) for adjusting the NO_2/NO_x ratio. The results demonstrate that a new type of a diesel particle filter (DPF) has been developed, in which various types of SCR catalysts can be integrated. This new filter with integrated SCR functionality can be used in the design of exhaust systems with reduced volume, weight and costs, which still meet the Euro 6/VI requirements in respect to NO_x and PN reduction for petrol and diesel engines.
机译:Deno_X功能在柴油发动机废气处理后的壁流过滤器中的集成是一种技术领域,近年来许多出版物引起了他们的注意。为了整合所需量的催化剂,已经开发出高多孔基材材料。高孔隙率水平为60%和更高的缺点是机械强度的显着降低。这项工作的目的是提供一种基于高多孔SiC材料的新溶液,该溶液由双层涂层处理。第一层是纳米颗粒涂层,其增强了基材的机械强度。它还可以用于改善催化性能,并最终降低第二涂层的负载,其是具有氨的NO_x选择性催化还原(SCR)的活性催化剂。已经研究了三种不同类型的催化剂作为第二层:Fe-β-沸石,基于二氧化铈和氧化锆的混合金属氧化物以及基于二氧化钛和丙酰胺的组成。研究了对孔结构的影响和所得背压以及SCR功能。结果表明,初始纳米颗粒层与不同催化剂层的组合导致了低催化剂载荷的高分性效率。已经执行了5.66“×8”尺寸的过滤器上的发动机台阶测试以验证欧元6 / VI应用的高粒子数(PN)过滤效率,并通过使用柴油氧化催化剂(DOC )用于调整NO_2 / NO_X比率。结果表明,已经开发了一种新型的柴油颗粒过滤器(DPF),其中可以整合各种类型的SCR催化剂。具有集成SCR功能的新过滤器可用于减少体积,重量和成本的排气系统的设计,这仍然符合汽油和柴油发动机的NO_X和PN减少欧元6 / VI要求。

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