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A Novel Route for Green Conversion of Cellulose to HMF by Cascading Enzymatic and Chemical Reactions

机译:通过级联酶促和化学反应进行纤维素与HMF的绿色转化途径

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In this work, a novel route to deconstruct cellulose into 5-hydroxymethylfurfural (HMF) by cascading enzymatic and chemical reactions is reported. For biocatalyst preparation, Fe3O4 nanoparticles encapsulated SBA-15 with appropriate pore size was synthesized and utilized as magnetic scaffolds for the immobilization of cellulase. For chemical catalyst preparation, sulfated zirconium dioxide conformed monolayers were grafted on SBA-15 template to create thermally robust mesoporous catalysts with tunable solid basic/Lewis acid and BrOnsted acid sites. Catalytic performance of biocatalyst and chemical catalyst was explored in the aqueous phase conversion of IL pretreated cellulose to glucose, and in the iPrOH/water solvent conversion of glucose to HMF conversion, respectively. After the optimization of reaction conditions, a sequential conversion of pretreated cellulose to glucose and glucose to HMF was performed, and 43.6% HMF yield can be obtained. The cascaded enzymatic and chemocatalytic reaction system demonstrates an effective and economically friendly process for biomass energy conservation. A novel route for green conversion of IL pretreated cellulose to 5-hydroxymethylfurfural (HMF) by cascading an enzymatic catalysis in an aqueous system with chemocatalysis in an iPrOH/water solvent mixture is reported. (C) 2017 American Institute of Chemical Engineers
机译:在这项工作中,据报道,通过级联和化学反应将纤维素解构成5-羟甲基糠醛(HMF)的新途径。对于生物催化剂制剂,合成具有适当孔径的Fe3O4纳米颗粒包封的SBA-15并用作固定纤维素酶的磁性支架。对于化学催化剂制剂,在SBA-15模板上接枝硫酸化锆二氧化锆符合单层,以产生具有可调谐固体碱性/路易斯酸和刚性酸位的热稳健的介孔催化剂。在IL预处理纤维素的水相转化中探讨了生物催化剂和化学催化剂的催化性能,分别在葡萄糖的IPROH /水溶液转化为HMF转化中。在优化反应条件后,进行预处理纤维素与葡萄糖和葡萄糖至HMF的顺序转化,可以获得43.6%的HMF产率。级联的酶促和化学催乳素反应系统证明了生物质节能的有效和经济友好的方法。据报道,通过级联在具有化学催化剂中级联用Chemog分析在IPHOH /水溶剂混合物中的酶促催化通过级联酶对5-羟甲基糠醛(HMF)的新型途径。 (c)2017美国化学工程师研究所

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