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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Conversion of fructose into furfural or 5-hydroxymethylfurfural over HY zeolites selectively in gamma-butyrolactone
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Conversion of fructose into furfural or 5-hydroxymethylfurfural over HY zeolites selectively in gamma-butyrolactone

机译:在γ-丁内酯中选择性地将果糖转化为糠醛或5-羟甲基糠醛过滤沸石

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摘要

Furfural is one of the most valuable biomass platform compounds which is typically prepared from hemicellulose. Conversion of cellulose and its derived hexoses, which are the most abundant resource in nature, to furfural, is a big challenge. The amount of the reactive form (fructofuranose) which was beneficial to the formation of furfural and HMF, was increased when the solvent transformed from water to gamma-butyrolactone (GBL)-water. The GBL promoted the adsorption of fructose on HY. The transfer of fructose from the solution to the channels of HY was enhanced with the introducing of GBL in solvent. The HY zeolite with apertures of 7.4 angstrom was found to promote the formation of acyclic fructose from cyclic fructose (8.6 angstrom) in the synergy with GBL. The Bronsted acid sites in the channels of HY favored the selective cleavage of the C-C bond in acyclic fructose to xylose, and promoted the following dehydration of xylose to furfural, simultaneously. The furfural yield was increased while the 5-hydroxymethylfurfural (HMF) yield was decreased with the decrease of the Bronsted acid sites density. The maximum furfural yield was 37.8% over HY-3, while the maximum HMF yield was 69.2% over HY-1 in the conversion of fructose in GBL-water solvent. In addition, the etherification of HMF was the main factor for the low HMF yield and carbon balance in fructose conversion in GBL-water solvent.
机译:糠醛是通常由半纤维素制备的最有价值的生物质平台化合物之一。纤维素及其衍生的己烷转化,这是自然界中最丰富的资源,糠醛是一个很大的挑战。当从水转化为γ-丁内酯(GBL)-WALT时,对形成糠醛和HMF有益于形成糠醛和HMF的反应性形式(Fructofuranose)的量。 GBL促进了果糖对Hy的吸附。通过在溶剂中引入GBL,增强了从溶液中转移到HY的溶液中的转移。发现具有7.4埃的孔的Hy沸石在与GBL中的协同作用中促进来自循环果糖(8.6埃)的环状果糖的形成。 Hy通道中的刚性酸位点赞成在无循环果糖中的C-C键的选择性切割至木糖,并同时促进木糖脱水至糠醛。随着布朗斯特酸位点的降低,5-羟甲基糠果(HMF)产率下降,糠醛产率升高。 HY-3的最大糠醛产率为37.8%,而在GBL-水溶剂中果糖的转化时,最大HMF产率为69.2%。此外,HMF的醚化是GBL-水溶剂中果糖转化中低HMF产率和碳平衡的主要因素。

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