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首页> 外文期刊>Catalysis science & technology >Regulation of Bronsted acid sites to enhance the decarburization of hexoses to furfural
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Regulation of Bronsted acid sites to enhance the decarburization of hexoses to furfural

机译:调节布朗斯特酸位点,以增强己糖的脱氧化

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Heterogeneous decarburization of hexose is a promising but challenging route to produce the platform molecule furfural, replacing the traditional production process of dehydration of pentose in homogeneous acid. Herein, H-Beta zeolites with varied Si/Al ratios have been prepared and evaluated to catalyze the decarburization of various hexoses (fructose, glucose, starch and cellulose) to furfural. A synergistic catalytic effect between the *BEA channel and framework-Al was found to be crucial to the formation of linear isomers and the selective cleavage of C-C bonds. Specifically, the *BEA channel favors the formation of the linear hexose isomer, and the framework-Al promotes the decarburization of hexose. Moreover, Bronsted acid was proved to be the active site of C-C bond fracture to generate the C5-intermediate, which promotes the further dehydration to furfural. Among these saccharides, the optimum performance with a FAL yield of 66.0% was obtained from fructose, which is the highest level among previous reports. Notably, a more valuable result of an FAL yield of 32.3% was achieved from cellulose, which is more widespread in nature. This work opens a prospective pathway to produce furfural from sustainable biomass materials.
机译:己糖的异质脱氧脱氧脱氧液是一种产生平台分子呋喃的有前途但具有挑战性的途径,取代了均质酸五戊酸脱水的传统生产过程。本文中,已经制备了具有变化的Si/Al比率的H-beta沸石,并评估以催化各种己糖(果糖,葡萄糖,淀粉和纤维素)的脱氧液化为呋喃。发现 *BEA通道和框架-AL之间的协同催化作用对于线性异构体的形成和C-C键的选择性切割至关重要。具体而言, *BEA通道有利于线性己糖异构体的形成,而框架 - AL促进了己糖的脱氧化。此外,事实证明,布朗斯特酸是C-C键骨折的活跃部位,以产生C5中间体,从而促进了进一步的脱水为呋喃。在这些糖中,FAL产量为66.0%的最佳性能是从果糖中获得的,这是先前报告中最高水平。值得注意的是,从纤维素中获得了32.3%的FAL产量的更有价值的结果,这在自然界中更为广泛。这项工作开辟了一种前瞻性途径,从可持续生物质材料中产生呋喃。

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