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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Levulinic acid esterification with ethanol to ethyl levulinate production over solid acid catalysts
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Levulinic acid esterification with ethanol to ethyl levulinate production over solid acid catalysts

机译:在固体酸催化剂上用乙醇将乙酰丙酸酯化为乙酰丙酸乙酯

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摘要

Levulinic acid is considered as a versatile building block because it can be used for the synthesis of several organic chemicals. In particular, its esterification with ethanol produces ethyl levulinate that can be used as diesel miscible biofuel (DMB), preventing global warming by decreasing atmospheric CO2 generated from the consumption of fossil fuels. This article explores the use of two groups of solid acid catalysts (sulfated oxides and zeolites with different pore structures) in the esterification of levulinc acid with ethanol aiming for ethyl levulinate production. It was found that while there is a correlation between the number of acidic sites and activity for the sulfated oxides, the same is not true for the studied zeolites where the pore channels play a more important role. Among the catalysts tested, Amberlyst-15 and sulfated SnO2 showed a remarkable high yield of ethyl levulinate that was probably due to the strong acidity provided by SO3H functional groups and SO4 species, respectively.
机译:左旋丙酸被认为是一种多功能的构建基块,因为它可用于多种有机化学物质的合成。特别是,其与乙醇的酯化反应可生成乙酰丙酸乙酯,可将其用作柴油可混溶的生物燃料(DMB),通过减少消耗化石燃料产生的大气CO2来防止全球变暖。本文探讨了两组固态酸催化剂(具有不同孔结构的硫酸盐和沸石)在乙酰丙酸与乙醇酯化中的用途,目的是生产乙酰丙酸乙酯。已经发现,尽管酸性位点的数量与硫酸盐氧化物的活性之间存在相关性,但对于所研究的沸石而言,孔通道起着更重要的作用却并非如此。在测试的催化剂中,Amberlyst-15和硫酸化SnO2表现出了很高的乙酰丙酸乙酯收率,这可能是由于SO3H官能团和SO4物种分别提供了强酸性。

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