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Properties Analysis of Spent Catalyst for Fixed-Bed Residue Hydrotreating Unit: Radial Distribution of Deposited Elements in Spent Catalyst Particles

机译:固定床渣油加氢处理装置用废催化剂的性能分析:废催化剂颗粒中沉积元素的径向分布

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14 spent catalysts, which were sampled from a commercial residue hydrotreating unit at the end of an operation cycle, were analyzed by SEM to describe elements distributions along the radial direction of particles. Different from laboratory equipment, on the whole, V, Ni and S showed U-shaped pattern along the radial direction of spent catalysts. The catalyst bed has been penetrated by deposited metals and deposited massive metals on catalyst, so the pore size of catalyst decreased, diffusion resistance increased and reactants entered internal of the catalysts more difficultly. Most of the organometallic compounds hydrotreated and deposited on outside of the catalyst particles. It is showed that metals deposited on catalyst in forms of metal sulfides because the points of high metal content also have high sulfur contents unexceptionally. The structure of high metal deposition catalyst was destroyed obviously or massive irregular material has deposited on the external surface. It is verified by SEM that there is no any distribution law for deposited elements along the bed height. The change laws of deposited elements along the bed height and radial direction of particles were influenced by various factors in commercial residue hydrotrating.
机译:在操作周期结束时从商用残渣加氢处理装置取样的14种废催化剂通过SEM进行分析,以描述沿颗粒径向方向的元素分布。与实验室设备不同,总体上,V,Ni和S沿废催化剂的径向呈U形图案。催化剂床层已被沉积的金属穿透,并在催化剂上沉积了块状金属,因此催化剂的孔径减小,扩散阻力增大,反应物更难以进入催化剂内部。大多数有机金属化合物经过加氢处理并沉积在催化剂颗粒的外部。结果表明,金属以金属硫化物的形式沉积在催化剂上,因为高金属含量的点也毫无例外地具有高硫含量。高金属沉积催化剂的结构被明显破坏或大量不规则物质沉积在外表面。 SEM证实,沿床高方向沉积元素没有任何分布规律。在工业渣油水解中,沉积元素沿床层高度和颗粒径向的变化规律受到多种因素的影响。

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