Yang Tao, Zhou Yi-Han, Zhu Sheng-Zhen, Pan Hui, Huang Yao-Bing
College of Chemical Engineering, Nanjing Forestry University, Longpan Road 159#, Nanjing, P.R: China.
ChemSusChem. 2017 Oct 23;10(20):4066-4079. doi: 10.1002/cssc.201701290. Epub 2017 Oct 9.
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 (SO ) exhibited excellent catalytic activity for xylan conversion, owing to a combination of Lewis and Brønsted acidity and its ability to promote good phase separation. The critical role of the SO anion was first analyzed, which resulted in the aforementioned characteristics when combined with the Al cation. The mixed solvent system with γ-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) (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 (SO ) catalyst was used for the production of furfural from several lignocellulosic feedstocks, revealing its great potential for other biomass conversions.
一种简单高效的双相体系,采用储量丰富的金属盐催化剂,在微波条件下从木聚糖制备糠醛,产率高达87.8%。引人注目的是,金属盐Al₂(SO₄)₃对木聚糖转化表现出优异的催化活性,这归因于其路易斯酸性和布朗斯特酸性的结合以及促进良好相分离的能力。首次分析了SO₄²⁻阴离子的关键作用,它与Al³⁺阳离子结合时产生了上述特性。以γ-戊内酯(GVL)为有机相的混合溶剂体系提供了最高的糠醛产率,这得益于其良好的介电性能和溶解能力,有利于微波能量的吸收并促进传质。机理研究表明,木聚糖向糠醛的转化主要通过水解-异构化-脱水途径进行,六配位的路易斯酸性[Al(OH)₂(aq)]物种是木糖-木酮糖异构化的活性位点。对木聚糖转化子反应的详细动力学研究表明,GVL通过提高糠醛生产关键步骤的速率并抑制腐殖质生产的副反应来调节反应速率和途径。最后,Al₂(SO₄)₃催化剂用于从几种木质纤维素原料生产糠醛,显示出其在其他生物质转化方面的巨大潜力。