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Catalytic reduction of NO over in situ syntehsized Ir/ZSM-5 monoliths

机译:原位合成Or / ZSM-5整体催化剂催化还原NO

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摘要

The catalytic perfornlance of Ir-based catalysts was investigated for the reduction of NO under lean-bum conditions over binderless Ir/ZSM-5 monoliths, which were prepared by a vapor phase transport (VPT) technique. The catalytic activity was found to be dependent not only on the Ir content, but also on the ZSM-5 loading of the monolith. With the decreasing of the Ir content or the increasing of the ZSM-5 loading of the monolith, NO conversion increased. When the ZSM-5 loading on the cordierite monolith was raised up to ca. 11% and the metal Ir content was about 5 g/l, the NO conversion reached its maximum value of 73% at 533 K and SV of 20000 h -I. Furthernlore, both the presence of 10% water vapor in the feed gas and the variation of space velocity of the reaction gases have little effect on the NO conversion. A comparative test between Ir/ZSM-5 and Cu/ZSM-5, as well as the variation of the feed gas compositions, revealed that Ir/ZSM-5 is very active for the reduction of NO by CO under lean conditions, although it is a poor catalyst for the C3Hg-SCR process. This unique property of Ir/ZSM-5 makes it superior to the traditional three-way catalyst (TWC) for NO reduction under lean conditions.
机译:研究了基于Ir的催化剂的催化性能,以在贫油条件下与无粘结剂Ir / ZSM-5整体材料相比通过稀薄条件下的NO还原,该整体材料是通过气相传输(VPT)技术制备的。发现催化活性不仅取决于Ir含量,而且取决于整料的ZSM-5负载。随着Ir含量的降低或整料的ZSM-5负载的增加,NO转化率增加。当堇青石整料上的ZSM-5负载升高至约200℃时。 11%的金属Ir含量约为5 g / l,NO转化率在533 K和SV为20000 h -I时达到其最大值73%。此外,进料气体中存在10%的水蒸气和反应气体的空速的变化对NO转化率几乎没有影响。 Ir / ZSM-5和Cu / ZSM-5之间的对比测试以及进料气体组成的变化表明,Ir / ZSM-5在稀薄条件下对于CO还原NO的活性非常高,尽管它是C3Hg-SCR工艺的不良催化剂。 Ir / ZSM-5的这一独特性能使其在稀薄条件下的NO还原方面优于传统的三效催化剂(TWC)。

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