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Combinatorial Design of Al2O3 Supported Au Catalysts For Preferential CO Oxidation

机译:Al 2 O 3 负载的Au优先CO氧化Au催化剂的组合设计

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摘要

Multi-component Au/Al2O3 catalysts were designed and tested for PROX reaction using holographic research strategy. On the bases of our previous study Pb has been selected as the main modifier of the Au. In addition to Au and Pb the catalysts library contained V, Ba, Ce, Sm, Ag and Cu resulting in multi component catalysts tailored for PROX reaction. After preparation and testing of 173 catalysts within five generations new catalyst compositions with excellent performance have been obtained. Upon using the best catalyst CO could be removed almost completely and the selectivity of oxygen towards the CO oxidation was around 75%. In the course of catalyst library design it has been revealed that the selection of the objective function (OF) has high impact both on the rate of optimization and the performance of catalysts designed. The complex OF was created from two single desirability functions related to CO conversion and oxygen selectivity towards CO oxidation. In order to maintain high optimization rate there was a need to change the weights of single desirability functions in the course of catalyst library design. The results show that Pb, Sm, Cu and Ag are the key modifiers for PROX reaction under experimental conditions applied.
机译:利用全息研究策略设计并测试了多组分Au / Al 2 O 3 催化剂的PROX反应性能。根据我们先前的研究,铅被选作金的主要改性剂。除Au和Pb外,催化剂库中还包含V,Ba,Ce,Sm,Ag和Cu,从而为PROX反应量身定制了多组分催化剂。在五代内对173种催化剂进行制备和测试后,获得了性能优异的新型催化剂组合物。使用最佳的催化剂后,CO几乎可以完全去除,并且氧气对CO氧化的选择性约为75%。在催化剂库设计的过程中,已经表明,目标函数(OF)的选择对优化速率和所设计催化剂的性能都有很大影响。复合物OF是由两个与CO转化率和氧对CO氧化的选择性有关的单个期望函数创建的。为了维持高的优化率,需要在催化剂库设计过程中改变单个期望函数的权重。结果表明,在所应用的实验条件下,Pb,Sm,Cu和Ag是PROX反应的关键改性剂。

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