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Hydrogen-transfer conversion of furfural into levulinate esters as potential biofuel feedstock 被引量:1

Hydrogen-transfer conversion of furfural into levulinate esters as potential biofuel feedstock
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摘要 Furfural is directly converted to levulinate esters(isopropyl levulinate and furan-2-ylmethyl-levulinate) as potential biofuel feedstocks, through a combined catalytic strategy. Nb;O;-ZrO;mixed oxide microspheres are used as bifunctional catalysts for hydrogen-transfer hydrogenation and acid-catalyzed alcoholysis in isopropanol. Bifunctional catalysts improve sustainability of furfural conversion through process intensification. Hydrogen transfer hydrogenation from isopropanol avoids dangerous hydrogen gas, and abates process and environmental costs. Isopropyl levulinate and furan-2-ylmethyl-levulinate are the main products that can be applied as blending components in biodiesel or hydrocarbon fuels. Furfural is directly converted to levulinate esters(isopropyl levulinate and furan-2-ylmethyl-levulinate) as potential biofuel feedstocks, through a combined catalytic strategy. Nb_2O_5-ZrO_2 mixed oxide microspheres are used as bifunctional catalysts for hydrogen-transfer hydrogenation and acid-catalyzed alcoholysis in isopropanol. Bifunctional catalysts improve sustainability of furfural conversion through process intensification. Hydrogen transfer hydrogenation from isopropanol avoids dangerous hydrogen gas, and abates process and environmental costs. Isopropyl levulinate and furan-2-ylmethyl-levulinate are the main products that can be applied as blending components in biodiesel or hydrocarbon fuels.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2016年第5期888-894,共7页 能源化学(英文版)
基金 supported by the National Natural Science Foundation of China (21403248, 21174148, 21101161, and 21304101)
关键词 FURFURAL Bifunctional catalyst Transfer hydrogenation Solid acid Levulinate esters Furfural Bifunctional catalyst Transfer hydrogenation Solid acid Levulinate esters
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