首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Studies on recycling and utilization of spent catalysts: Preparation of active hydrodemetallization catalyst compositions from spent residue hydroprocessing catalysts
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Studies on recycling and utilization of spent catalysts: Preparation of active hydrodemetallization catalyst compositions from spent residue hydroprocessing catalysts

机译:废催化剂的回收和利用研究:由废渣加氢处理催化剂制备活性加氢脱金属催化剂组合物

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Spent catalysts form a major source of solid wastes in the petroleum refining industries. Due to environmental concerns, increasing emphasis has been placed on the development of recycling processes for the waste catalyst materials as much as possible. In the present study the potential reuse of spent catalysts in the preparation of active new catalysts for residual oil hydrotreating was examined. A series of catalysts were prepared by mixing and extruding spent residue hydroprocessing catalysts that contained C, V, Mo, Ni and Al2O3 with boehmite in different proportions. All prepared catalysts were characterized by chemical analysis and by surface area, pore volume, pore size and crushing strength measurements. The hydrodesulfurization (HDS) and hydrodemetallization (HDM) activities of the catalysts were evaluated by testing in a high pressure fixed-bed microreactor unit using Kuwait atmospheric residue as feed. A commercial HDM catalyst was also tested under similar operating conditions and their HDS and HDM activities were compared with that of the prepared catalysts. The results revealed that catalyst prepared with addition of up to 40 wt% spent catalyst to boehmite had fairly high surface area and pore volume together with large pores. The catalyst prepared by mixing and extruding about 40 wt% spent catalyst with boehmite was relatively more active for promoting HDM and HDS reactions than a reference commercial HDM catalyst. The formation of some kind of new active sites from the metals (V, Mo and Ni) present in the spent catalyst is suggested to be responsible for the high HDM activity of the prepared catalyst. (C) 2006 Elsevier B.V. All rights reserved.
机译:废催化剂是石油精炼工业中固体废物的主要来源。由于环境方面的考虑,越来越多地将重点放在尽可能多地开发废催化剂材料的再循环方法上。在本研究中,研究了废催化剂在制备用于剩余油加氢处理的活性新催化剂中的潜在重用。通过将含有C,V,Mo,Ni和Al2O3的废残渣加氢处理催化剂与勃姆石以不同比例混合和挤出,制得了一系列催化剂。所有制备的催化剂均通过化学分析,表面积,孔体积,孔径和抗碎强度测量来表征。催化剂的加氢脱硫(HDS)和加氢脱金属(HDM)活性通过使用科威特常压渣油作为进料在高压固定床微反应器中进行测试进行评估。还在相似的操作条件下测试了商用HDM催化剂,并将其HDS和HDM活性与制备的催化剂进行了比较。结果表明,向勃姆石中添加至多40重量%的废催化剂制备的催化剂具有相当高的表面积和孔体积以及大孔。通过将约40重量%的废催化剂与勃姆石混合并挤出而制备的催化剂与参考的商业HDM催化剂相比,在促进HDM和HDS反应方面相对更具活性。建议由废催化剂中存在的金属(V,Mo和Ni)形成某种新的活性位点,这是所制备催化剂的高HDM活性的原因。 (C)2006 Elsevier B.V.保留所有权利。

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