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Direct conversion of cellulose to glucose and valuable intermediates in mild reaction conditions over solid acid catalysts

机译:在固体酸催化剂的温和反应条件下,纤维素直接转化为葡萄糖和有价值的中间体

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The direct hydrolysis of cellulose to glucose, HMF and other soluble by-products at 190"C in water solution using zeolites (H-BEA, H-MOR), sulphated zirconia supported over mesoporous silica (SBA-15), Amberlyst~R 15, heteropolyacids and AlCl3·6H2O as acid catalysts was studied using a high cellulose to catalyst ratio (10), not-pretreated (neither mechanically nor chemically) cellulose and a static (not mixed) autoclave. Under these conditions, not usually considered, but relevant for industrial applications, micro and mesoporous solid acid catalysts are active in the direct hydrolysis of cellulose to glucose, HMF and other soluble by-products. The reactivity in crystalline cellulose conversion is determined on one side from the need to realize an efficient solid-solid interaction between the external surface of the catalyst and the crystalline cellulose, and on the other side on the need to limit the secondary reactions of the formed products. Microporous materials, due to the presence of shape-selectivity effects limiting the polymerization of glucose to humic-type species show the highest formation of glucose and HMF with respect to the sulphated zirconia supported over mesoporous silica (SBA-15) and homogeneous heteropoly acids.
机译:使用沸石(H-BEA,H-MOR),负载在介孔二氧化硅(SBA-15),Amberlyst〜R 15上的沸石(H-BEA,H-MOR)将纤维素直接水解为葡萄糖,HMF和其他可溶性副产物,研究了杂多酸和AlCl3·6H2O作为酸催化剂,使用高纤维素与催化剂的比率(10),未预处理(机械或化学方式)的纤维素和静态(非混合)高压釜,在这种条件下,通常不考虑,但对于工业应用而言,微孔和中孔固体酸催化剂在纤维素直接水解成葡萄糖,HMF和其他可溶性副产物方面具有活性。结晶纤维素转化的反应性一方面取决于实现高效固相催化剂的需要。催化剂外表面与结晶纤维素之间的固相相互作用,另一方面需要限制所形成产物的副反应。相对于介孔二氧化硅(SBA-15)和均相杂多酸负载的硫酸化氧化锆而言,将葡萄糖聚合限制为腐殖型物质的形状选择性效应显示出最高的葡萄糖和HMF形成率。

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