首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Deactivation of Ni-Mo/Al2O3 catalysts aged in a commercial reactor during the hydrotreating of deasphalted vacuum residuum
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Deactivation of Ni-Mo/Al2O3 catalysts aged in a commercial reactor during the hydrotreating of deasphalted vacuum residuum

机译:在脱沥青真空渣油的加氢处理过程中,在工业反应器中老化的Ni-Mo / Al2O3催化剂失活

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A series of Ni-Mo/Al2O3 catalysts for the hydrotreating of deasphalted vacuum bottoms has been investigated as fresh catalysts and after aging in an industrial reactor during a typical commercial run. Several structural parameters have been varied in the catalyst series. In particular, pore size, surface area, active metal loading and pellet size were changed to investigate the role of kinetic and diffusional phenomena present in this process. The samples were placed in different locations along the industrial reactor allowing for a comparative analysis of the different samples under varying environments, since along the reactor, quality, temperature, and H-2 partial pressure continuously change. Fresh and aged samples were analyzed by a variety of techniques, which include atomic adsorption, scanning electron microscopy, X-ray microanalysis, BET, thermogravimetry and temperature-programmed oxidation. In addition, a laboratory trickle-bed reactor was used to compare the catalytic activity of fresh samples with the residual activity retained by the aged samples after the commercial run. These catalysts deactivate by accumulation of metals and, to a lesser extent, coke deposition. These effects are governed by a competition of kinetic and diffusional phenomena. The kinetic phenomena, which involve adsorption and decomposition of metal-bearing compounds are mainly related to the active metal content and overall surface area of the catalyst, while the diffusion of the molecules inside the pellet are controlled by pore size distribution and pellet size. The current contribution shows how this type of comparative study can be used to identify the most appropriate catalyst configuration for a given set of reaction conditions and feedstock quality. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 18]
机译:已经研究了一系列用于脱沥青真空残渣的加氢处理的Ni-Mo / Al2O3催化剂,它们是新鲜的催化剂,并且在典型的商业运行中在工业反应器中老化后进行了研究。在催化剂系列中已经改变了几个结构参数。特别是,改变了孔径,表面积,活性金属负载量和颗粒尺寸,以研究此过程中动力学和扩散现象的作用。将样品放置在工业反应器的不同位置,以便在不同环境下对不同样品进行比较分析,因为沿着反应器,质量,温度和H-2分压会不断变化。通过各种技术对新鲜和老化的样品进行分析,包括原子吸附,扫描电子显微镜,X射线显微分析,BET,热重分析和程序升温氧化。此外,实验室滴流床反应器用于比较新鲜样品的催化活性和商业运行后老化样品保留的残留活性。这些催化剂通过金属的积聚以及在较小程度上的焦炭沉积而失活。这些效应受动力学和扩散现象的竞争支配。涉及含金属化合物的吸附和分解的动力学现象主要与催化剂的活性金属含量和总表面积有关,而颗粒内部的分子扩散受孔径分布和颗粒大小控制。当前的贡献显示了如何使用这种类型的比较研究来确定对于给定的一组反应条件和原料质量而言最合适的催化剂配置。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:18]

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