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Experimental and DFT studies of initiation processes for butane isomerization over sulfated-zirconia catalysts

机译:硫酸盐氧化锆催化剂上丁烷异构化引发过程的实验和DFT研究

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Reaction kinetics studies were conducted of isobutane and n-butane isomerization at 423 K over sulfated-zirconia, with the butane feeds purified of olefins, Dihydrogen evolution was observed during butane isomerization over fresh catalysts, as well as over catalysts selectively poisoned by preadsorbed ammonia. Butane isomerization over sulfated-zirconia can be viewed as a surface chain reaction comprised of initiation, propagation, and termination steps. The primary initiation step in the absence of feed olefins is considered to be the dehydrogenation of butane over sulfated-zirconia, generating butenes which adsorb onto acid sites to form protonated olefinic species associated with the conjugate base form of the acid sites. Quantum-chemical calculations, employing density-functional theory, suggest that the dissociative adsorption of dihydrogen, isobutylene hydrogenation, and dissociative adsorption of isobutane are feasible over the sulfated-zirconia cluster, and these reactions take place over Zr-O sites. (C) 1998 Academic Press. [References: 77]
机译:在硫酸化氧化锆上于423 K下进行了异丁烷和正丁烷异构化反应动力学研究,其中丁烷进料中纯化了烯烃,在丁烷异构化过程中观察到在新鲜催化剂以及被预吸附氨选择性中毒的催化剂上二氢放出。丁烷在硫酸盐氧化锆上的异构化可以看作是由引发,扩散和终止步骤组成的表面链反应。在没有进料烯烃的情况下的主要引发步骤被认为是丁烷在硫酸化氧化锆上的脱氢作用,产生丁烯,其吸附在酸性位点上形成与酸性位点的共轭碱形式缔合的质子化的烯类。利用密度泛函理论的量子化学计算表明,在硫酸化氧化锆团簇上,二氢的解离吸附,异丁烯加氢和异丁烷的解离吸附是可行的,并且这些反应在Zr-O位点发生。 (C)1998年学术出版社。 [参考:77]

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