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Effect of Loading Potassium and Palladium over Iron-Based Catalyst for Low Temperature Water-Gas Shift Reaction

机译:铁基催化剂上负载钾和钯对低温水煤气变换反应的影响

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We investigated the effect of loading potassium over iron-based catalysts for water-gas shift (WGS) reaction at 573 K. The iron-based water-gas shift catalyst has been known as a redox-mechanism catalyst. Therefore, to promote the redox reaction over iron oxide, we impregnated a small amount of Pd on various iron oxides. Results revealed that coexisting potassium and palladium accelerated the WGS reaction over iron-oxide catalyst. We examined the optimum amount of potassium over Pd/iron catalyst, and we found that the optimum molar ratio was about 2 (K/Pd molar ratio). From the viewpoint of reduc-ibility of the catalyst, the addition of small amount of Pd onto iron oxide promotes reduction from Fe2O3 to Fe3O4. However, impregnation of potassium on iron oxide makes the catalyst structure robust. The promotion effect of Pd and potassium was not observed on SiO2 support. We therefore concluded that the synergetic effect among Pd, K, and iron oxide, was important for the WGS reaction.
机译:我们研究了在573 K上,在铁基催化剂上负载钾对水煤气变换(WGS)反应的影响。铁基水煤气变换催化剂被称为氧化还原机理催化剂。因此,为了促进氧化铁上的氧化还原反应,我们在各种氧化铁上浸渍了少量的Pd。结果表明,钾和钯的共存促进了铁氧化物催化剂上的WGS反应。我们研究了钾在Pd /铁催化剂上的最佳用量,发现最佳摩尔比约为2(K / Pd摩尔比)。从催化剂的还原性的观点出发,在氧化铁上添加少量的Pd促进从Fe 2 O 3还原为Fe 3 O 4。然而,钾在氧化铁上的浸渍使催化剂结构坚固。在SiO 2载体上未观察到Pd和钾的促进作用。因此,我们得出结论,钯,钾和氧化铁之间的协同作用对于WGS反应很重要。

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