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Effect of Additives on the Activity of Nickel–Tungsten Sulfide Hydroconversion Catalysts Prepared In Situ from Oil-Soluble Precursors

机译:添加剂对油溶性前驱体原位制备的镍-钨硫化氢加氢转化催化剂活性的影响

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The nickel–tungsten sulfide catalysts for the hydroconversion of hydrocarbons were prepared from oil-soluble nickel and tungsten precursor compounds in situ with the use of silica, alumina, titania, zeolite Y, and amorphous aluminosilicate as additives in a vacuum gas oil medium. It was found that the catalytic activity in hydrocracking depends on the concentration of acid sites in the resulting catalyst. With the use of oxide additives, the dispersion and the promoter ratio of the in situ formed sulfide particles increased in the order SiO 2 –Al 2 O 3 –TiO 2 . It was noted that the promoter ratio of sulfide particles obtained with the use of aluminosilicate additives depended on their porous structure peculiarities. The use of titanium dioxide as a catalytic system component made it possible to reach high activity in hydrocracking, hydrodearomatization, and hydrodesulfurization, which was comparable to that of a system based on zeolite Y, a highly acidic component.
机译:用于碳氢化合物加氢转化的镍-钨硫化物催化剂是由油溶性镍和钨前体化合物在真空瓦斯油介质中,使用二氧化硅,氧化铝,二氧化钛,沸石Y和无定形硅铝酸盐作为添加剂原位制备的。发现加氢裂化中的催化活性取决于所得催化剂中酸位的浓度。通过使用氧化物添加剂,原位形成的硫化物颗粒的分散度和促进剂比例按SiO 2 -Al 2 O 3 -TiO 2的顺序增加。注意到使用铝硅酸盐添加剂获得的硫化物颗粒的促进剂比例取决于它们的多孔结构特性。使用二氧化钛作为催化体系组分使得可以在加氢裂化,加氢脱芳烃化和加氢脱硫中达到高活性,这与基于高酸性组分Y的沸石体系相当。

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