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首页> 外文期刊>Journal of Catalysis >Nature of active sites and deactivation mechanism for n-butane isomerization over alumina-promoted sulfated zirconia
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Nature of active sites and deactivation mechanism for n-butane isomerization over alumina-promoted sulfated zirconia

机译:氧化铝促进的硫酸化氧化锆上正丁烷异构化的活性位点的性质和失活机理

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摘要

The deactivation of n-butane isomerization on alumina-promoted sulfated zirconia (SZA) was studied at 473 K under atmospheric pressure. Under N-2, the regeneration temperature influences the isomerization activity greatly. The change of the sulfate species during the deactivation process was determined quantitatively by a temperature-programmed evolution mass spectrometer. Two active sites, reducible sites and acid sites, exist on the catalyst surface and show a synergistic effect on the n-butane isomerization reaction. The reducible sulfate species play an important role in butene formation via oxidative dehydrogenation of n-butane, while the acid sites are responsible for the isomerization steps. The reduction of sulfate species and the accumulation of sulfite species on the surface, which cause the decrease of butene concentration in the catalyst bed, are the main reasons for catalyst deactivation. Based on these findings, a new reaction model and two possible ways to improve the catalytic stability of SZA catalyst are proposed. (C) 2016 Elsevier Inc. All rights reserved.
机译:在大气压下于473 K下研究了氧化铝促进的硫酸化氧化锆(SZA)上正丁烷异构化的失活。在N-2条件下,再生温度对异构化活性影响很大。失活过程中硫酸盐种类的变化通过温度编程的进化质谱仪定量确定。催化剂表面上存在两个活性位点,即可还原位点和酸性位点,并显示出对正丁烷异构化反应的协同作用。可还原的硫酸盐物种在通过正丁烷的氧化脱氢形成丁烯中起重要作用,而酸性位点是异构化步骤的原因。硫酸盐种类的减少和表面亚硫酸盐种类的积累,这导致催化剂床中丁烯浓度的降低,是催化剂失活的主要原因。基于这些发现,提出了一种新的反应模型和两种提高SZA催化剂稳定性的可能方法。 (C)2016 Elsevier Inc.保留所有权利。

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