Promoting Effect of Cobalt on the Catalytic Properties of Molybdenum Disulfide Nanoparticle Suspensions

IF 1.3 4区 工程技术 Q3 CHEMISTRY, ORGANIC
Kh. M. Kadiev, A. E. Batov, L. A. Zekel’, N. A. Kubrin, M. Ya. Visaliev, A. U. Dandaev
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Abstract

The catalytic activity of suspensions of cobalt-promoted molybdenum disulfide particles in hydroconversion of the petroleum vacuum residue was studied. Catalyst particle suspensions were prepared from inverse emulsions of aqueous solutions of the precursors (ammonium paramolybdate, cobalt nitrate or acetate) directly in the feed (in situ). Two procedures were used for preparing the promoted catalyst: consecutive or simultaneous addition of the precursors to the dispersion medium. The toluene-insoluble particles (TIPs) containing the spent catalyst had the size from 380 to 410 nm and contained the MoS2, МоО3, and Co9S8 crystalline phases. The cobalt-promoted dispersed catalyst exhibits the maximal activity in hydrodesulfurization and hydrogenation at the cobalt content of 33 at. %. The effect observed is due to the formation of a variable-composition Мо–Со–S phase, which cannot be identified by X-ray diffraction, on the surface of MoS2 particles. A further increase in the promoter concentration leads to blocking of the MoS2 particle surface with Co9S8 crystals, which, in turn, leads to a decrease in the catalyst activity in hydrodesulfurization and hydrogenation of high-molecular-mass feed components, to an increase in coking, and to a decrease in the fraction of paraffin–naphthene hydrocarbons in the hydrogenation product.

Abstract Image

钴对二硫化钼纳米颗粒悬浮液催化性能的促进作用
研究了钴促进二硫化钼颗粒悬浮液在石油真空渣油加氢转化中的催化活性。催化剂颗粒悬浮液是由前驱体(副钼酸铵、硝酸钴或醋酸盐)水溶液的反相乳液直接在进料中(原位)制备的。制备促进催化剂采用两种方法:连续或同时将前驱体添加到分散介质中。含废催化剂的甲苯不溶性颗粒(TIPs)尺寸为380 ~ 410 nm,包含MoS2、МоО3和Co9S8晶相。钴促进分散催化剂在钴含量为33 at时加氢脱硫和加氢活性最大。%。观察到的效应是由于在二硫化钼颗粒表面形成了一种x射线衍射无法识别的变组成Мо -Со-S相。进一步提高促进剂浓度,会导致MoS2颗粒表面被Co9S8晶体堵塞,进而导致催化剂在高分子质量进料组分加氢脱硫和加氢过程中的活性降低,焦化率增加,加氢产物中石蜡-环烷烃的含量降低。
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来源期刊
Petroleum Chemistry
Petroleum Chemistry 工程技术-工程:化工
CiteScore
2.50
自引率
21.40%
发文量
102
审稿时长
6-12 weeks
期刊介绍: Petroleum Chemistry (Neftekhimiya), founded in 1961, offers original papers on and reviews of theoretical and experimental studies concerned with current problems of petroleum chemistry and processing such as chemical composition of crude oils and natural gas liquids; petroleum refining (cracking, hydrocracking, and catalytic reforming); catalysts for petrochemical processes (hydrogenation, isomerization, oxidation, hydroformylation, etc.); activation and catalytic transformation of hydrocarbons and other components of petroleum, natural gas, and other complex organic mixtures; new petrochemicals including lubricants and additives; environmental problems; and information on scientific meetings relevant to these areas. Petroleum Chemistry publishes articles on these topics from members of the scientific community of the former Soviet Union.
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