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Influence of Pt location on BaCO3 or Al2O3 during NOx storage reduction

机译:还原NOx期间Pt位置对BaCO3或Al2O3的影响

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Catalysts for NOx storage-reduction (NSR) were made selectively with Pt on either the Al- or the Ba- components without altering significantly the Al2O3 or BaCO3 crystal sizes, Al/Ba weight ratio, specific surface area, porosity, and Pt dispersion using a two-nozzle flame spray pyrolysis (FSP) unit. The NOx storage performance at 300 degrees C was best for Pt located near Al2O3 as it facilitates the oxidation of NO to NO2 during the fuel lean period but the reduction rate during the subsequent short fuel rich period was much slower resulting in incomplete regeneration. This contributed to a gradual decrease of the NO, conversion at increasing cycling. In contrast, Pt on BaCO3 resulted in an initially lower NOx storage rate but during ten storage-reduction cycles a stable NOx conversion of about 50% was reached. When using NO2 instead of NO or higher NOx oxidation-reduction temperatures (e.g. 350 degrees C) the Pt location did not affect the NSR performance of the Pt/Ba/Al2O3 catalysts. (C) 2008 Elsevier Inc. All rights reserved.
机译:使用Pt在Al或Ba-组分上选择性地制备还原NOx的催化剂(NSR),而不会显着改变Al2O3或BaCO3的晶体尺寸,Al / Ba重量比,比表面积,孔隙率和Pt分散两喷嘴火焰喷雾热解(FSP)单元。 300℃下的NOx储存性能最好位于Al2O3附近的Pt,因为它有助于在燃料稀少期间将NO氧化为NO2,但随后的短暂燃料富集期间的还原速度要慢得多,导致再生不完全。这导致循环次数增加时NO转化率逐渐降低。相反,在BaCO3上的Pt最初导致较低的NOx储存速率,但在十个储存-还原循环中,NOx转化率稳定在50%左右。当使用NO 2代替NO或更高的NO x氧化还原温度(例如350℃)时,Pt位置不影响Pt / Ba / Al 2 O 3催化剂的NSR性能。 (C)2008 Elsevier Inc.保留所有权利。

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