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Production of liquid hydrocarbon fuels by catalytic conversion of biomass-derived levulinic acid

机译:通过生物质衍生的乙酰丙酸的催化转化生产液态烃燃料

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摘要

Levulinic acid derived from ligno-cellulosic biomass has the potential to be utilized as a platform intermediate molecule in the production of renewable liquid fuels for the transportation sector. Herein we report a catalytic process for the conversion of levulinic acid to γ-valerolactone (GVL) using a RuRe/C catalyst that is significantly more active than a traditional Ru/C catalyst. The bimetallic catalyst is active for the reduction of levulinic acid and simultaneous decomposition of formic acid with good stability in the presence of sulfuric acid, the homogeneous catalyst commonly used in the production of levulinic acid from carbohydrates. Results from techno-economic analyses show that the integration of this new process with catalytic decarboxylation of GVL to butene followed by alkene oligomerization could provide a cost-effective route for the conversion of ligno-cellulosic biomass to liquid hydrocarbon fuels.
机译:源自木质纤维素生物质的乙酰丙酸有潜力被用作生产运输领域可再生液体燃料的平台中间分子。本文中,我们报告了使用RuRe / C催化剂将乙酰丙酸转化为γ-戊内酯(GVL)的催化过程,该催化剂的活性明显高于传统Ru / C催化剂。该双金属催化剂在硫酸存在下具有良好的稳定性,用于还原乙酰丙酸和同时分解甲酸,该硫酸是常用于由碳水化合物生产乙酰丙酸的均相催化剂。技术经济分析的结果表明,该新方法与GVL催化脱羧成丁烯并随后进行烯烃低聚的整合可以为木质纤维素生物质转化为液态烃燃料提供经济有效的途径。

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