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Phase Transfer Catalyst Assisted One-Pot Synthesis of 5- (Chloromethyl)furfural from Biomass-Derived Carbohydrates in a Biphasic Batch Reactor

机译:相位转移催化剂辅助从双相批处理反应器中生物质衍生的碳水化合物的5-(氯甲基)呋喃的一锅合成

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摘要

5-(Chloromethyl)furfural (CMF), a bio-renewable chemical build- ing block, has been produced in good isolated yields from biomass-derived carbohydrates within a closed aqueous HCl- 1,2-dichloroethane biphasic reactor in the presence of benzyl- tributylammonium chloride (BTBAC) as a phase transfer catalyst (PTC). The solvent-economic, one-pot strategy afforded CMF in 73% isolated yield (90 °C, 3 h) from sucrose with a combined yield of 84% for CMF and levulinic acid. The process was optimized on temperature, duration, solvent, type, and loading of PTC. Use of BTBAC led to nearly 10% increase in yield of CMF for all substrates when compared to control reactions.
机译:5-(氯甲基)呋喃(CMF)是一种可生物可再生的化学构建块,已从封闭的HCL-1,2-二氯乙烷双烷基双相反应器中的生物质衍生的碳水化合物中以良好的孤立产率产生。 - 氯化铵(BTBAC)作为相转移催化剂(PTC)。 溶剂 - 经济策略为CMF和利氟米酸的合并产量为84%,以73%的分离产率(90°C,3 h)提供CMF。 该过程对PTC的温度,持续时间,溶剂,类型和加载进行了优化。 与对照反应相比,BTBAC的使用导致所有底物的CMF产量增加了近10%。

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