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首页> 外文期刊>Journal of Catalysis >Influence of sulfiding agent and pressure on structure and performance of CoMo/Al2O3 hydrodesulfurization catalysts
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Influence of sulfiding agent and pressure on structure and performance of CoMo/Al2O3 hydrodesulfurization catalysts

机译:硫化剂和压力对CoMo / Al2O3加氢脱硫催化剂结构和性能的影响

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摘要

Gas-phase activation and liquid-phase activation were compared for a suite of CoMo/Al2O3 catalysts with phosphoric acid (PA) and/or citric acid (CA) as additives. Gas-phase activation was carried out in 1 or 20 bar H-2/H2S(10%), whereas liquid-phase activation comprised sulfidation in a model diesel feed, spiked with dimethyldisulfide and 20 bar H-2. Full sulfidation of calcined precursors was difficult to achieve (type I), as shown by XPS and EXAFS. CA addition slowed the sulfidation of cobalt and molybdenum in 1 bar H-2/H2S compared to a catalyst with no additives, but it substantially increased sulfidation rates in 20 bar H-2/H2S. This can be attributed to reduced support interactions and enhanced reducibility of molybdenum. Liquid-phase sulfidation was initiated by a release of H2S at similar to 250 degrees C due to decomposition of the spiking agent dimethyldisulfide. The resulting active phase was composed of predominantly MoS2 single-layers, whereas stacked layers formed after gas-phase activation. Catalytic activity in thiophene and DBT HDS mainly depended on the number of promoted sites. Catalysts prepared with CA had the highest degree of promotion and were most active in thiophene and DBT HDS, whereas the catalyst with PA performed best in gas-oil HDS due to increased stability. (C) 2016 Elsevier Inc. All rights reserved.
机译:比较了一整套以磷酸(PA)和/或柠檬酸(CA)为添加剂的CoMo / Al2O3催化剂的气相活化和液相活化。气相活化在1或20 bar H-2 / H2S(10%)中进行,而液相活化包括在模型柴油进料中进行硫化,掺入二甲基二硫和20 bar H-2。如XPS和EXAFS所示,很难实现煅烧前体的完全硫化(I型)。与没有添加剂的催化剂相比,添加CA减慢了在1 bar H-2 / H2S中钴和钼的硫化速度,但是却大大提高了在20 bar H-2 / H2S中的硫化速度。这可以归因于减少的载体相互作用和增强的钼还原性。由于加标剂二甲基二硫化物的分解,在类似于250摄氏度的温度下释放H2S引发了液相硫化。所得的活性相主要由MoS2单层组成,而气相活化后形成堆叠层。噻吩和DBT HDS中的催化活性主要取决于所促进位点的数量。用CA制备的催化剂具有最高的促进度,并且在噻吩和DBT HDS中最活跃,而由于PA的催化剂具有更高的稳定性,因此在瓦斯油HDS中表现最佳。 (C)2016 Elsevier Inc.保留所有权利。

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