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作 者:Dan Li Hui Xin Xiangzhe Du Xiaolei Hao Qingxue Liu Changwei Hu
机构地区:[1]Key Laboratory of Green Chemistry and Technology, Ministry of Education, College of Chemistry, Sichuan University [2]College of Chemical Engineering, Sichuan University
出 处:《Science Bulletin》2015年第24期2096-2106,共11页科学通报(英文版)
基 金:supported by the National Natural Science Foundation of China(21303109);the Application Foundation Program of Sichuan Province(2013JY0007)
摘 要:The current world energy crisis and increasing environmental concerns over global climate change from combusting fossil fuel are driving researchers into a new route to produce fuels via sustainable resource to meet the demands of human. In recent years, deoxygenation as an alternative method has been applied in the production of hydrocarbon fuels, particularly via the deoxygenation of fatty acids and triglycerides from seed oils and fats, producing hydrocarbon fuels entirely fungible with fossil fuels. The deoxygenation of biobased feedstock to fuel-like hydrocarbons is critically reviewed in this article. The review mainly discusses the use of feedstock, innovation of catalysts, and the reaction mechanism involved in the production of hydrocarbon fuels via deoxygenation progress.The current world energy crisis and increasing environmental concerns over global climate change from combusting fossil fuel are driving researchers into a new route to produce fuels via sustainable resource to meet the demands of human. In recent years, deoxygenation as an alternative method has been applied in the production of hydrocarbon fuels, particularly via the deoxygenation of fatty acids and triglycerides from seed oils and fats, pro- ducing hydrocarbon fuels entirely fungible with fossil fuels. The deoxygenation of biobased feedstock to fuel-like hydrocarbons is critically reviewed in this article. The review mainly discusses the use of feedstock, innovation of catalysts, and the reaction mechanism involved in the production of hydrocarbon fuels via deoxygenation progress.
关 键 词:Deoxygenation Biobased feedstock -Hydrocarbon fuels Deoxygenation mechanism
分 类 号:TK6[动力工程及工程热物理—生物能]
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