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首页> 外文期刊>European journal of organic chemistry >Production of gamma-Valerolactone from One-Pot Transformation of Biomass-Derived Carbohydrates Over Chitosan-Supported Ruthenium Catalyst Combined with Zeolite ZSM-5
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Production of gamma-Valerolactone from One-Pot Transformation of Biomass-Derived Carbohydrates Over Chitosan-Supported Ruthenium Catalyst Combined with Zeolite ZSM-5

机译:从壳聚糖负载的钌催化剂中加工凝聚蛋白衍生的钌催化剂的一锅生物质衍生碳水化合物的γ-戊酮的生产联合沸石ZSM-5

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摘要

It remains as a challenge to directly transform the biomass-derived C5 carbohydrates, such as furfural (FF) and its upstream product xylose and hemicellulose, to gamma-valerolactone (GVL), a versatile renewable chemical platform, due to various restrictions in the current synthetic strategies. Using formic acid as green hydrogen source, we synthesized the recyclable chitosan-Ru/PPh3 catalyst system, effective for both the hydrogenation of FF to furfuryl alcohol (FAL) and the reduction of levulinic acid (LA) or ethyl levulinate (EL) to GVL, affording up to 99 % product yields. The combination of chitosan-Ru/PPh3 with ZSM-5 could successfully achieve up to 79 % yield of GVL from one-pot conversion of FF under mild condition. Preliminary studies indicated that this method could also be applied to the direct conversion of biomass-derived C5 carbohydrates such as xylose and hemicellulose to GVL in 37 % or 30 % yield, respectively.
机译:直接将生物质衍生的C5碳水化合物(如糠醛(FF)及其上游产品木糖和半纤维素)直接转化为γ-戊内酯(GVL),一种多功能可再生化学平台的挑战,这是由于电流的各种限制 合成策略。 使用甲酸作为绿色氢气来源,我们合成可再循环的壳聚糖-RU / PPH3催化剂体系,有效地对FF的氢化至糠醇(FAL)和紫水酸(LA)或乙烯乙酰乙烯(EL)降低至GVL ,高达99%的产品产量。 用ZSM-5的壳聚糖-Ru / PPH3的组合可以在温和条件下从FF的单罐转化中成功地获得高达79%的GVL产率。 初步研究表明,该方法也可以应用于生物质 - 衍生的C5碳水化合物如木糖和半纤维素的直接转化为37%或30%产率的GVL。

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