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Hydrocracking of Vacuum Gasoil on NiMo/AAS-Al 2O 3 Catalysts Prepared from Citric Acid: Effect of the Catalyst Heat Treatment Temperature

机译:NiMO / AAS-AL <下标> 2 O <下标> 3 催化剂的加氢裂化 - 由柠檬酸制备的催化剂:催化剂热处理温度的影响

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Ni-Mo bimetallic catalysts are prepared by impregnating a carrier containing amorphous aluminosilicate (AAS) and aluminum oxide using a solution with Ni, Mo, and citric acid. The temperature of the catalysts ranges from 120 to 550°С. The physicochemical properties of the catalysts are studied via XPS, TEM, and HCNS analysis, and they are tested in hydrocracking of vacuum gasoil. The particles of the sulfide active component (NiMoS phase) are localized predominantly on surfaces of aluminum oxide, and only some are on surfaces of AAS. When the temperature of catalyst calcination is raised, the average number of the layers in particles of the NiMoS phase grows as well, due to the removal of citric acid. This indicates strengthening of the interaction between the sulfide active component and aluminum oxide. The content of Ni-Mo massive sulfide particles also grows along with the temperature of calcination. The morphological characteristics of the sulfide active component affect the activity of the catalysts in hydrodesulfurization and hydrodenitrogenation, but not in hydrocracking. The optimum heat treatment temperature for NiMo/AAS-Al~(2)O~(3)catalysts prepared with citric acid is 120°C. Recommendations are given for the heat treatment of catalysts under industrial conditions.
机译:使用Ni,Mo和柠檬酸浸渍含有无定形硅铝酸盐(AAS)和氧化铝的载体来制备Ni-Mo双金属催化剂。催化剂的温度范围为120至550°С。通过XPS,TEM和HCNS分析研究催化剂的物理化学性质,并在真空胃的加氢裂化中进行测试。硫化物活性成分(NiMOS相)的颗粒主要位于氧化铝的表面上,并且只有一些在AA的表面上。当升高催化剂煅烧的温度时,由于除去柠檬酸,因此NiMOS相的颗粒中的层的平均数量也会增长。这表明强化硫化物活性成分和氧化铝之间的相互作用。 Ni-Mo大规模硫化物颗粒的含量也随着煅烧的温度而增长。硫化物活性成分的形态学特性影响加氢脱硫和氢化氢化物中催化剂的活性,但不含加氢裂化。用柠檬酸制备的NiMO / AAS-Al〜(2)O〜(3)催化剂的最佳热处理温度为120℃。提供了在工业条件下催化剂的热处理的建议。

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