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The hydrocracking of waste lubricant into gasoline fraction was carried out using CoMo catalyst supported on mesoporous carbon. The carbon was synthesized using bovine bone gelatin and SBA-15 as a template. The metals were loaded onto the carbon by wet impregnation method. The total metal content of catalyst was prepared into two different amounts which were labelled as CoMo/MCG1 and CoMo/MCG2. Catalytic activity and selectivity were evaluated in hydrocracking of waste lubricant at 450, 475, and 500 °C, and lubricant/catalyst weight ratio of 50, 100, 200, 300, and 400. The result revealed that acidity and specific surface area of the catalyst played an important role in determining the catalytic performance in the hydrocracking of waste lubricant. The highest percentage of gasoline fraction was 58.09%, produced by hydrocracking of waste lubricant at 475 °C and lubricant/catalyst weight ratio of 300 using CoMo/MCG2 catalyst.  相似文献   
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Alisha  Gesha Desy  Trisunaryanti  Wega  Syoufian  Akhmad 《SILICON》2022,14(5):2309-2315
Silicon - The highest activity and selectivity results were achieved in the presence of Mo metal supported by SBA-15. Mo/SBA-15 catalyst was synthesized using the wet impregnation method. Catalysts...  相似文献   
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Salamah  Siti  Trisunaryanti  Wega  Kartini  Indriana  Purwono  Suryo 《SILICON》2022,14(7):3583-3590
Silicon - The high content of silica is present in beach sand and this silica can be synthesized into mesoporous silica (MS) using the sonochemistry assisted with dodecyl-amine (DDA) as a...  相似文献   
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