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Novel Efficient Mesoporous Solid Acid Catalyst UDCaT-4:Dehydration of 2-Propanol and Alkylation of Mesitylene

机译:新型高效介孔固体酸催化剂UDCaT-4:2-丙醇脱水和均三甲苯烷基化

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摘要

A novel mesoporous solid acid catalyst named UDCaT-4 was synthesized by incorporating superacidic centers of persulfated alumina and zirconia into highly ordered and well-defined hexagonal mesoporous silica.The catalyst is well characterized,and its properties are compared with those of bulk persulfated alumina and zirconia (PAZ) by FTIR spectroscopy,X-ray diffraction,Brunauer-Emmett-Teller surface area,pore size analysis,scanning electron microscopy,energy dispersive X-ray spectroscopy,and ammonia temperature-programmed desorption.UDCaT-4 is more acidic than PAZ.The dehydration processes of 2-propanol,diisopropyl ether,and n-propanol were studied independently including a mixture of ra-propanol and 2-propanol to throw light on kinetics and mechanism.For alkylation of mesitylene with 2-propanol,UDCaT-4 exhibits superior catalytic activity in comparison with PAZ and also it shows remarkable stability toward coke formation.Kinetic interpretations of the observed rate data are presented for all reactions,and mechanistic models are developed.The results are novel.
机译:通过将过硫酸铝和氧化锆的超酸性中心掺入高度有序且轮廓分明的六角形介孔二氧化硅中,合成了新型介孔固体酸催化剂UDCaT-4。 FTIR光谱,X射线衍射,Brunauer-Emmett-Teller表面积,孔尺寸分析,扫描电子显微镜,能量色散X射线光谱和氨程序升温脱附的氧化锆(PAZ).UDCaT-4比独立研究了2-丙醇,二异丙醚和正丙醇的脱水过程,包括镭丙醇和2-丙醇的混合物,以阐明其动力学和机理。与PAZ相比,4具有更好的催化活性,并且对焦炭形成具有显着的稳定性。观察到的速率数据的动力学解释为f或所有反应,并建立了机理模型。结果是新颖的。

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