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High-pressure in situ Mossbauer emission spectroscopy study of the sulfidation of calcined Co-Mo/Al2O3 hydrodesulfurization catalysts

机译:煅烧Co-Mo / Al2O3加氢脱硫催化剂硫化的高压原位Mossbauer发射光谱研究

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The influence of high pressure on the sulfidation of calcined CoMo/Al2O3 catalysts, under conditions relevant to industry, was studied by means of Mossbauer emission spectroscopy (MES). The measurements were carried out in a high-pressure Mossbauer in situ reactor, which offers the possibility of studying cobalt-based catalysts under realistic hydrotreatment conditions. Activation at 673 K and 4 MPa results in complete sulfidation of Co that has diffused into the Al2O3 support during calcination, the Co-Mo-S structure being the only Co phase present in sulfided industrial CoMo/Al2O3 catalysts. On the basis of comparisons with previous MES results on alumina-supported catalysts it is concluded that the calcination treatment retards the sulfidation of the Co atoms to temperatures where MoS2 particles are already present, favoring Co-Mo-S phase formation. (C) 2003 Elsevier Inc. All rights reserved. [References: 36]
机译:借助Mossbauer发射光谱法(MES),研究了高压在工业相关条件下对煅烧CoMo / Al2O3催化剂硫化的影响。测量是在高压Mossbauer原位反应器中进行的,这提供了在实际加氢处理条件下研究钴基催化剂的可能性。在673 K和4 MPa下活化会导致Co的完全硫化,在煅烧期间扩散到Al2O3载体中的Co完全硫化,Co-Mo-S结构是硫化的工业CoMo / Al2O3催化剂中唯一的Co相。根据与先前在氧化铝负载的催化剂上的MES结果进行比较的结论,得出的结论是,煅烧处理将Co原子的硫化反应延迟到已经存在MoS2颗粒的温度,有利于Co-Mo-S相的形成。 (C)2003 Elsevier Inc.保留所有权利。 [参考:36]

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