除氧
催化作用
分子
化学
溶剂
材料科学
化学工程
纳米技术
有机化学
工程类
作者
Ganpat Choudhary,Bhagirath Saini,Meena Yadav,Pragati R. Sharma,Shubham Pandey,Abhishek Saini,Rakesh K. Sharma
出处
期刊:
[American Chemical Society]
日期:2024-06-20
卷期号:1 (7): 1388-1399
被引量:2
标识
DOI:10.1021/acssusresmgt.4c00028
摘要
The catalytic roles of biominerals and naturally abundant supporting materials like HAP are key factors in the geological formations of fossil fuels from biomass. Herein, we are inspired to synthesize Co- and Ni-supported HAP catalysts that can transform methyl oleate into diesel-grade hydrocarbons. In our investigation, the Ni-HAP catalyst shows more favorable behavior toward decarboxylation/decarbonylation and the Co-HAP catalyst promotes excellent selectivity in hydrodeoxygenation (HDO), while the combined effect of CoNi-HAP followed both the decarboxylation/decarbonylation and hydrodeoxygenation routes. The catalytic hydrogenation of methyl oleate using a Co-HAP catalyst revealed a 100% conversion with C18 selectivity of 85.5% at 280 °C, 8 h, and 15 bar pressure. Meanwhile, Ni-HAP shows 100% conversion with C17 selectivity of 89.6% at 280 °C, 12 h, and 15 bar pressure. The CoNi-HAP shows a 100% conversion with the mixed C17 and C18 hydrocarbons. The Co-HAP, Ni-HAP, and CoNi-HAP catalysts are used under solvent-free conditions, which are industrially feasible and offer significant economic and environmental benefits for large-scale production. During six test cycles, the catalyst can be recycled and reused. These insights may open the door to developing a catalyst with high catalytic performance.
科研通智能强力驱动
Strongly Powered by AbleSci AI