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Enhanced saccharification of sugarcane bagasse using soluble cellulase supplemented with immobilized β-glucosidase

机译:补充固定化β-葡萄糖苷酶的可溶性纤维素酶增强甘蔗渣的糖化

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摘要

The β-glucosidase (BG) enzyme plays a vital role in the hydrolysis of lignocellulosic biomass. Supplementation of the hydrolysis reaction medium with BG can reduce inhibitory effects, leading to greater conversion. In addition, the inclusion of immobilized BG can be a useful way of increasing enzyme stability and recyclability. BG was adsorbed on polyacrylic resin activated by carboxyl groups (BG–PC) and covalently attached to glyoxyl–agarose (BG–GA). BG–PC exhibited similar behavior to soluble BG in the hydrolysis of cellobiose, while BG–GA hydrolyzed the same substrate at a lower rate. However, the thermal stability of BG–GA was higher than that of free BG. Hydrolysis of pretreated sugarcane bagasse catalyzed by soluble cellulase supplemented with immobilized BG improved the conversion by up to 40% after 96 h of reaction. Both derivatives remained stable up to the third cycle and losses of activity were less than 50% after five cycles.
机译:β-葡萄糖苷酶(BG)酶在木质纤维素生物质的水解中起着至关重要的作用。用BG补充水解反应介质可以降低抑制作用,从而提高转化率。另外,包含固定的BG可能是增加酶稳定性和可回收性的有用方法。 BG吸附在被羧基活化的聚丙烯酸酯树脂(BG–PC)上,并与乙醛琼脂糖(BG–GA)共价结合。 BG–PC在纤维二糖的水解中表现出与可溶性BG相似的行为,而BG–GA则以较低的速率水解相同的底物。但是,BG–GA的热稳定性高于游离BG。反应96小时后,由可溶性纤维素酶和固定化BG催化催化的预处理甘蔗渣水解反应,转化率提高了40%。两种衍生物在第三个循环之前都保持稳定,并且在五个循环后活性损失小于50%。

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