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Hydrocracking of vacuum residue with various types of activated carbons and metal additives was conducted at 400°C and a hydrogen partial pressure of 3.45MPa in supercritical m-xylene. The effects of the textural properties and surface acidity of the activated carbon on the conversion, coke formation, and distribution of oil products (naphtha, middle distillate, vacuum gas oil, and residue) were investigated...
Hydrocracking of vacuum residue with activated carbon was conducted in a batch reactor with two types of supercritical hydrocarbon solvents, aromatic hydrocarbons (m-xylene and toluene) and normal alkane hydrocarbons (n-hexane and n-dodecane). The supercritical reactions were performed at 400°C with H 2 partial pressures of 3.45MPa and 6.89MPa. The supercritical hydrocarbon solvent affected...
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