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Biorefining strategy for maximal monosaccharide recovery from three different feedstocks: eucalyptus residues, wheat straw and olive tree pruning

机译:从三种不同原料中​​最大回收单糖的生物精制策略:桉树渣,麦秸和橄榄树修剪

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摘要

This work proposes the biorefining of eucalyptus residues (ER), wheat straw (WS) and olive tree pruning (OP) combining hydrothermal pretreatment (autohydrolysis) with acid post-hydrolysis of the liquid fraction and enzymatic hydrolysis of the solid fraction towards maximal recovery of monosaccharides from those lignocellulose materials. Autohydrolysis of ER, WS and OP was performed under non-isothermal conditions (195–230 C) and the non-cellulosic saccharides were recovered in the liquid fraction while cellulose and lignin remained in the solid fraction. The acid post-hydrolysis of the soluble oligosaccharides was studied by optimizing sulfuric acid concentration (1–4% w/w) and reaction time (10–60 min), employing a factorial (22) experimental design. The solids resulting from pretreatment were submitted to enzymatic hydrolysis by applying commercial cellulolytic enzymes Celluclast1.5 L and Novozyme 188 (0.225 and 0.025 g/g solid, respectively). This strategy provides high total monosaccharide recovery or high glucose recovery from lignocellulosic materials, depending on the autohydrolysis conditions applied.
机译:这项工作提出了对桉树残留物(ER),麦秸(WS)和橄榄树修剪(OP)进行生物精制的方法,该方法将水热预处理(自动水解)与液体部分的酸后水解和固体部分的酶促水解相结合,以实现最大程度的回收。这些木质纤维素材料中的单糖。 ER,WS和OP的自动水解是在非等温条件(195–230 C)下进行的,液体部分中回收了非纤维素糖,而固体部分中则保留了纤维素和木质素。采用因子分解(22)实验设计,通过优化硫酸浓度(1-4%w / w)和反应时间(10-60 min),研究了可溶性寡糖的酸后水解。通过应用商业纤维素分解酶Celluclast1.5 L和Novozyme 188(分别为0.225和0.025 g / g固体),将预处理产生的固体进行酶水解。根据所应用的自动水解条件,该策略可从木质纤维素材料中提供高总单糖回收率或高葡萄糖回收率。

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