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Conversion of glucose into 5-hydroxymethylfurfural in different solvents and catalysts: Reaction kinetics and mechanism

机译:在不同溶剂和催化剂中将葡萄糖转化为5-羟甲基糠醛的反应动力学和机理

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Synthesis of 5-hydroxymethylfurfural (HMF) from glucose was done in H2O, dimethylsulfoxide (DMSO) and 1-butyl-3-methylimidazolium chloride ([Bmim]Cl) catalyzed by metal (III) chloride (FeCl3·6H2O, CrCl3·6H2O and AlCl3). The effects of solvent/catalyst system and temperature/time on the performance of the reaction are studied. HMF yield in the different solvents follows a decreasing order as DMSO>[Bmim]Cl>H2O. The highest HMF yield is achieved by CrCl3·6H2O, followed by AlCl3 and then FeCl3·6H2O. An optimal temperature/time is found at 393K or 403K and a time between 30min and 480min. Under the optimal reaction conditions, HMF yields of 54.43% and 52.86% are obtained in DMSO with CrCl3·6H2O at 403K and 480min and AlCl3 at 393K and 240min, respectively. The mechanism of the halide chlorides catalyzed glucose conversion reaction is proposed. The kinetic model is established to describe the HMF formation and the experimental data conform to the model.
机译:在水,二甲基亚砜(DMSO)和氯化金属(III)(FeCl3·6H2O,CrCl3·6H2O和CrCl3催化)中,由葡萄糖合成5-羟甲基糠醛(HMF)。 AlCl3)。研究了溶剂/催化剂体系和温度/时间对反应性能的影响。随着DMSO> [Bmim] Cl> H2O的增加,不同溶剂中的HMF产率呈递减顺序。 CrCl3·6H2O,AlCl3,FeCl3·6H2O的HMF产量最高。发现最佳温度/时间为393K或403K,且时间介于30分钟至480分钟之间。在最佳反应条件下,在DMSO中CrCl3·6H2O在403K和480min时和AlCl3在393K和240min时,HMF的收率分别为54.43%和52.86%。提出了卤化物氯化物催化葡萄糖转化反应的机理。建立了描述HMF形成的动力学模型,实验数据符合该模型。

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