加氢脱氧
喷气燃料
催化作用
加氢脱硫
钴
材料科学
碳纤维
生物燃料
钼
化学工程
产量(工程)
大气压力
化学
废物管理
选择性
有机化学
冶金
复合材料
复合数
工程类
海洋学
地质学
作者
Agus Yulianto,Wega Trisunaryanti,Triyono Triyono,Karna Wijaya,Karna Wijaya,Indriana Kartini,Suryo Purwono,Rodiansono Rodiansono,Ady Mara
标识
DOI:10.1016/j.cscee.2024.100894
摘要
The issue of the depletion of the availability of fossil fuels for the aviation industry and the adverse effects of their use has led researchers to continue to develop biofuels from vegetable oils that are abundant in nature. This research successfully converted refined palm oil (RPO) into bio-jet fuel catalyzed by Co and/or Mo dispersed on activated carbon at atmospheric pressure. The catalyst materials were synthesized using the spray impregnation method. Various monometal and/or bimetal catalyst arrangements in the reactor were tested for their performance in the hydrotreatment process, primarily to assess the role of molybdenum as an active metal for hydrodeoxygenation reaction. The Co/C (top) coupled with Mo/C (bottom) catalyst arrangement produced the highest bio-jet fuel yield of 49.8 % with a selectivity of 94.59 % using RPO feed that had undergone thermal treatment at 450–550 °C. Compared to other studies, this research can produce bio-jet fuel with much lower pressure, thus making it greener and safer.
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