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A kinetic study on the decomposition of 5-hydroxymethylfurfural into levulinic acid

机译:5-羟甲基糠醛分解为乙酰丙酸的动力学研究

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Levulinic acid (LA), accessible by the acid catalyzed degradation of biomass, is potentially a very versatile green intermediate chemical for the synthesis of various (bulk) chemicals for applications like fuel additives, polymers, and resin precursors. We report here a kinetic study on one of the key steps in the conversion of biomass to levulinic acid, i.e. the reaction of 5-hydroxymethylfurfural (HMF) to levulinic acid. The kinetic experiments were performed in a temperature window of 98-181 degrees C, acid concentrations between 0.05-1 M, and initial HMF concentrations between 0.1 and 1 M. The highest LA yield was 94% (mol/mol), obtained at an initial HMF concentration of 0.1 M and a sulfuric acid concentration of 1 M. The yield at full HMF conversion is independent of the temperature. An empirical rate expression for the main reaction as well as the side reaction to undesired humins was developed using the power law approach. Agreement between experimental and model data is good. The rate expressions were applied to gain insights into optimum process conditions for batch processing.
机译:可以通过酸催化的生物质降解获得的左旋丙酸(LA)是一种潜在的非常通用的绿色中间化学品,用于合成各种(散装)化学品,用于燃料添加剂,聚合物和树脂前体。我们在这里报告了将生物质转化为乙酰丙酸的关键步骤之一的动力学研究,即5-羟甲基糠醛(HMF)与乙酰丙酸的反应。动力学实验在98-181摄氏度的温度范围内,酸浓度在0.05-1 M之间,初始HMF浓度在0.1和1 M之间的条件下进行。最高的LA收率为94%(mol / mol),在初始HMF浓度为0.1 M,硫酸浓度为1M。完全HMF转化时的产率与温度无关。使用幂定律方法开发了针对主要反应以及不希望有的腐殖质的副反应的经验速率表达式。实验数据与模型数据之间的一致性很好。应用速率表达式以深入了解批处理的最佳工艺条件。

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