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Biobased Furanics: Kinetic Studies on the Acid Catalyzed Decomposition of 2-Hydroxyacetyl Furan in Water Using Brönsted Acid Catalysts

机译:生物基呋喃剂:使用布朗斯台德酸催化剂对水中2-羟基乙酰基呋喃进行酸催化分解的动力学研究

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摘要

Biobased furanics like 5-hydroxymethylfurfural (5-HMF) are interesting platform chemicals for the synthesis of biofuel additives and polymer precursors. 5-HMF is typically prepared from C6 ketoses like fructose, psicose, sorbose and tagatose. A known byproduct is 2-hydroxyacetylfuran (2-HAF), particularly when using sorbose and psicose as the reactants. We here report an experimental and kinetic modeling study on the rate of decomposition of 2-HAF in a typical reaction medium for 5-HMF synthesis (water, Brönsted acid), with the incentive to gain insights in the stability of 2-HAF. A total of 12 experiments were performed (batch setup) in water with sulfuric acid as the catalyst (100–170 °C, CH2SO4 ranging between 0.033 and 1.37 M and an initial 2-HAF concentration between 0.04 and 0.26 M). Analysis of the reaction mixtures showed a multitude of products, of which levulinic acid (LA) and formic acid (FA) were the most prominent (Ymax,FA = 24 mol %, Ymax,LA = 10 mol %) when using HCl. In contrast, both LA and FA were formed in minor amounts when using H2SO4 as the catalyst. The decomposition reaction of 2-HAFusing sulfuric acid was successfully modeled (R2 = 0.9957) using a first-order approach in 2-HAF and acid.The activation energy was found to be 98.7 (±2.2) kJ mol–1.
机译:5-羟基甲基糠醛(5-HMF)等生物基呋喃化合物是用于合成生物燃料添加剂和聚合物前体的有趣平台化学品。 5-HMF通常由C6酮糖如果糖,阿胶,山梨糖和塔格糖制备。已知的副产物是2-羟基乙酰基呋喃(2-HAF),特别是在使用山梨糖和癸糖作为反应物时。我们在此报告了在典型的5-HMF合成反应介质(水,布朗斯台德酸)中2-HAF分解速率的实验和动力学模型研究,旨在激发人们对2-HAF稳定性的认识。在水中以硫酸为催化剂(100-170°C,CH2SO4在0.033至1.37 M之间,初始2-HAF浓度在0.04至0.26 M之间)进行了总共12个实验(分批设置)。对反应混合物的分析显示出多种产物,其中当使用HCl时,乙酰丙酸(LA)和甲酸(FA)最突出(Ymax,FA = 24mol%,Ymax,LA = 10mol%)。相反,当使用H 2 SO 4作为催化剂时,LA和FA均少量形成。 2-HAF的分解反应在2-HAF和酸中采用一阶方法成功地模拟了使用硫酸的溶液(R 2 = 0.9957)。发现活化能为98.7(±2.2)kJ mol –1

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