催化作用
化学
沸石
双金属片
热解
芳构化
柴油
活性炭
产量(工程)
碳氢化合物
碳纤维
有机化学
生物量(生态学)
催化裂化
热解油
汽油
吸附
材料科学
冶金
农学
复合数
复合材料
生物
作者
Tewodros Kassa Dada,Arun K. Vuppaladadiyam,Xiaofei Duan,Ravinder Kumar,Elsa Antunes
标识
DOI:10.1016/j.biortech.2022.127515
摘要
In this work, Cu-SrO bimetallic catalyst was synthesised and examined for catalytic co-pyrolysis of ironbark (IB) and waste cooking oil (WCO) using Py-GC/MS. The effect of catalyst supports (ZSM-5, Y-zeolite, activated carbon, Al2O3, and ZrO2) on aromatic hydrocarbons yield was studied. The effect of catalyst support on the selectivity of gasoline (C8-C14), diesel (C15-C17), and heavy oil (>C20) components of bio-oil were studied. Non-catalytic co-pyrolysis of IB and WCO produced a heavy oil component of 58.7% (>C20). SrO initiated a ketonization reaction that converted carboxylic acids into new C-C bonds. The addition of Cu effectively promoted secondary cracking and aromatization reactions enhancing the hydrocarbon yield. Cu-SrO/ZSM-5 and Cu-SrO/Y-zeolite produced low acid content of 4.43% and 12.5%, respectively. Overall, the bimetallic catalyst Cu-SrO/ZSM-5 significantly increased the amount of C8-C14 compounds to 87.28% and reduced compounds over C20 to 1.19%.
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