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首页> 外文期刊>Journal of Materials Science >Catalytic structure and reaction performance of PtSnK/ZSM-5 catalyst for propane dehydrogenation: influence of impregnation strategy
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Catalytic structure and reaction performance of PtSnK/ZSM-5 catalyst for propane dehydrogenation: influence of impregnation strategy

机译:PtSnK / ZSM-5丙烷脱氢催化剂的催化结构和反应性能:浸渍策略的影响

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摘要

In this study, a series of PtSnK/ZSM-5 catalysts for propane dehydrogenation were prepared by changing the impregnation sequence of platinum and tin precursors (co-impregnation and successive impregnation). To investigate the influence of impregnation strategy on the catalyst structure and the reaction performance, the prepared samples were studied by several techniques, including XRD, nitrogen adsorption, ICP, TEM, NH3-TPD, FT-IR, hydrogen chemisorption, H-2-TPR, and TPO. It was found that the prepared sample with co-impregnation method showed the highest reaction stability and selectivity when comparing with the ones prepared by the sequential impregnation. As for the co-impregnated catalyst, high metal dispersion, strong interaction of Pt with Sn oxide together with the decreased catalyst acidity were all responsible for the improved reaction properties and better catalytic capacity to resist the coke. Nevertheless, over the sequentially impregnated catalysts, the increased catalyst acidity and the relatively easy reduction of tin species were found when the Pt components were deposited first. Furthermore, the successive impregnation with inverse sequence led to the wide metallic distribution and the restricted transformation of the active sites. All of these factors were disadvantageous to the reaction to be carried out. Finally, a model for the influences of impregnation sequence was proposed based on the obtained results.
机译:在这项研究中,通过改变铂和锡前体的浸渍顺序(共浸渍和连续浸渍),制备了一系列用于丙烷脱氢的PtSnK / ZSM-5催化剂。为了研究浸渍策略对催化剂结构和反应性能的影响,采用XRD,氮吸附,ICP,TEM,NH3-TPD,FT-IR,氢化学吸附,H-2- TPR和TPO。结果表明,与连续浸渍法制备的样品相比,共浸渍法制备的样品具有最高的反应稳定性和选择性。对于共浸渍催化剂,金属的高分散性,Pt与Sn氧化物的强相互作用以及降低的催化剂酸度都是改善反应性能和提高抗焦炭催化能力的原因。然而,在先后浸渍的催化剂上,当首先沉积Pt组分时,发现催化剂的酸度增加,锡种类相对容易减少。此外,以相反顺序的连续浸渍导致宽的金属分布和活性位点的受限转变。所有这些因素均不利于要进行的反应。最后,基于所得结果,提出了浸渍顺序影响的模型。

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