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Dehydrogenation of propane over PtSnAl/SBA-15 catalysts: Al addition effect and coke formation analysis

机译:PTSNAL/SBA-15催化剂上丙烷的脱氢作用:Al添加效果和可乐形成分析

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摘要

A series of PtSnAl/SBA-15 catalysts were prepared by incipient-wetness impregnation and their catalytic performance was tested for propane dehydrogenation. The catalysts were characterized by XRF, XRD, BET, TEM, UV-vis DRS, NH3-TPD, O-2-TPO, Al-27 MAS-NMR, XPS and in situ Raman analyses. The addition of aluminum enhances the interaction of the Sn support and consequently stabilizes the oxidation state of Sn during the propane dehydrogenation reaction. The acid centers formed by aluminum addition show close contact with metal centers (Pt), which favors the synergistic effect of the bifunctional active centers. High catalytic performance over PtSnAl0.2/SBA-15 was obtained, and one-pass propane conversion and propene selectivity are 55.9% and 98.5%, respectively. Moreover, the in situ Raman results indicated the faster coke formation rate of PtSnAl0.4/SBA-15 than that of PtSnAl0.2/SBA-15, which may be accelerated by strong acid sites by excess aluminum addition.
机译:通过初期湿度浸渍制备了一系列PTSNAL/SBA-15催化剂,并测试了其催化性能以进行丙烷脱氢。 催化剂的特征是XRF,XRD,BET,TEM,UV-VIS DRS,NH3-TPD,O-2-TPO,AL-27 MAS-NMR,XPS,XPS和原位拉曼分析。 铝的添加增强了SN载体的相互作用,因此在丙烷脱氢反应过程中稳定了SN的氧化态。 铝添加形成的酸中心与金属中心(PT)紧密接触,这有利于双功能活性中心的协同作用。 在PTSNAL0.2/SBA-15上获得了高催化性能,一通丙烷转化率和丙烯选择性分别为55.9%和98.5%。 此外,原位拉曼结果表明,PTSNAL0.4/SBA-15的可口可乐形成速度比PTSNal0.2/SBA-15的焦炭形成速率更快,这可以通过过量的铝添加来加速强酸位点。

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