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首页> 外文期刊>ChemSusChem >Insight into Aluminum Sulfate-Catalyzed Xylan Conversion into Furfural in a -Valerolactone/Water Biphasic Solvent under Microwave Conditions
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Insight into Aluminum Sulfate-Catalyzed Xylan Conversion into Furfural in a -Valerolactone/Water Biphasic Solvent under Microwave Conditions

机译:在微波条件下,在-Valerolodone /水双相溶剂中欣赏硫酸铝催化的木聚糖转化为糠醛

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摘要

A simple and efficient biphasic system with an earth-abundant metal salt catalyst was used to produce furfural from xylan with a high yield of up to 87.8% under microwave conditions. Strikingly, the metal salt Al-2(SO4)(3) exhibited excellent catalytic activity for xylan conversion, owing to a combination of Lewis and BrOnsted acidity and its ability to promote good phase separation. The critical role of the SO42- anion was first analyzed, which resulted in the aforementioned characteristics when combined with the Al3+ cation. The mixed solvent system with -valerolactone (GVL) as the organic phase provided the highest furfural yield, resulting from its good dielectric properties and dissolving capacity, which facilitated the absorption of microwave energy and promoted mass transfer. Mechanistic studies suggested that the xylan-to-furfural conversion proceeded mainly through a hydrolysis-isomerization-dehydration pathway and the hexa-coordinated Lewis acidic [Al(OH)(2)(aq)](+) species were the active sites for xylose-xylulose isomerization. Detailed kinetic studies of the subreaction for the xylan conversion revealed that GVL regulates the reaction rates and pathways by promoting the rates of the key steps involved for furfural production and suppressing the side reactions for humin production. Finally, the Al-2(SO4)(3) catalyst was used for the production of furfural from several lignocellulosic feedstocks, revealing its great potential for other biomass conversions.
机译:使用含有地球 - 丰富的金属盐催化剂的简单高效的双相系统用于从微波条件下产生高产率高达87.8%的木聚糠醛。尖锐的是,金属盐Al-2(SO 4)(3)表现出Xylan转化率的优异催化活性,由于Lewis和Bronsted酸度的组合及其促进良好相分离的能力。首先分析SO42-阴离子的关键作用,这使得与Al3 +阳离子结合时上述特性。用良好的浊度产率作为有机相的混合溶剂系统提供了最高的糠醛产率,由其良好的介电性能和溶解能力产生,这促进了微波能量和促进的传质。机械研究表明,甲木染料转化主要通过水解 - 异构化 - 脱水途径进行,六核酸酸酸碱[Al(OH)(2)(2)(AQ)](+)物种是木糖的活性位点 - 含有异构化。亚烷基转化率的细节动力学研究显示,GVL通过促进糠醛产生的关键步骤的速率来调节反应速率和途径,并抑制疏湿性产生的副反应。最后,Al-2(SO4)(3)催化剂用于从几种木质纤维素原料中产生糠醛,揭示其其他生物质转化的巨大潜力。

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