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One-pot conversion of biomass-derived carbohydrates into 5-[(formyloxy)methyl]furfural: A novel alternative platform chemical

机译:一锅转化生物质衍生的碳水化合物到5-[(甲酰氧基)甲基]糠醛:一种新型的替代平台化学品

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摘要

5-(Hydroxymethyl)furfural (HMF) is an important platform chemical, but the large scale production is limited by its instability. In this research, 5-[(formyloxy)methyl]furfural (FMF), derived from HMF, was produced directly from cellulose in formic acid reaction system with a yield of 33.4 mol% at 150 degrees C for 2 h. Among numerous metal salt catalysts screened in this study, alkali metal bromides were found to be effective in catalyzing cellulose conversion to FMF. Bromide anions facilitation of the esterification of HMF to form FMF was confirmed. In addition, the effects of water, acid and other reaction parameters also were investigated when NaBr was used as the catalyst. Up to 2% of water or acid in this reaction system did not impact on the FMF yield. Increasing the temperature for every 20 degrees C from 130 degrees C to 170 degrees C halved the reaction time but did not change the maximum yield. FMF was more hydrophobic and thermostable than HMF, which made it easier to be recovered. In a two-step process, FMF with a recovery of 29.4 mol% and purity of 97 mol% was obtained. (C) 2016 Elsevier B.V. All rights reserved.
机译:5-(羟甲基)糠醛(HMF)是重要的平台化学品,但其不稳定性限制了其大规模生产。在这项研究中,由HMF衍生的HMF衍生的5-[(甲酰氧基)甲基]糠醛(FMF)由甲酸反应体系中的纤维素直接制备,在150摄氏度下2小时的收率为33.4摩尔%。在这项研究中筛选出的众多金属盐催化剂中,发现碱金属溴化物可有效催化纤维素转化为FMF。证实了溴化物阴离子有助于HMF酯化形成FMF。此外,当使用NaBr作为催化剂时,还研究了水,酸和其他反应参数的影响。在该反应系统中,高达2%的水或酸不会影响FMF的产率。每20摄氏度将温度从130摄氏度提高到170摄氏度,反应时间减少了一半,但没有改变最大产率。 FMF比HMF更具疏水性和热稳定性,因此更易于回收。通过两步法,获得具有29.4 mol%的回收率和97 mol%的纯度的FMF。 (C)2016 Elsevier B.V.保留所有权利。

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