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Enhanced Enzymatic Hydrolysis of Lignocellulose by Optimizing Enzyme Complexes

机译:优化酶复合物增强木质纤维素的酶水解

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To enhance the conversion of the cellulose and hemicellulose, the corncob pretreated by aqueous ammonia soaking was hydrolyzed by enzyme complexes. The saturation limit for cellulase (Spezyme CP) was determined as 15 mg protein/g glucan (50 filter paper unit (FPU)/g glucan). The accessory enzymes (β-glucosidase, xylanase, and pectinase) were supplemented to hydrolyze cellobiose (cellulase-inhibiting product), hemicellulose, and pectin (the component covering the fiber surfaces), respectively. It was found that β-glucosidase (Novozyme 188) loading of 1.45 mg protein/g glucan [30 cellobiase units (CBU)/g glucan] was enough to eliminate the cellobiose inhibitor, and 2.9 mg protein/g glucan (60 CBU/g glucan) was the saturation limit. The supplementation of xylanase and pectinase can increase the conversion of cellulose and hemicellulose significantly. The yields of glucose and xylose enhanced with the increasing enzyme loading, but the increasing trend became low at high loading. Compared with xylanase, pectinase was more effective to promote the hydrolysis of cellulose and hemicellulose. The supplementation of pectinase with 0.12 mg protein/g glucan could increase the yields of glucose and xylose by 7.5% and 29.3%, respectively.
机译:为了提高纤维素和半纤维素的转化率,将通过氨水浸泡预处理的玉米芯通过酶复合物水解。纤维素酶(Spezyme CP)的饱和极限确定为15 mg蛋白/ g葡聚糖(50滤纸单位(FPU)/ g葡聚糖)。补充了辅助酶(β-葡萄糖苷酶,木聚糖酶和果胶酶)以分别水解纤维二糖(纤维素酶抑制产物),半纤维素和果胶(覆盖纤维表面的成分)。已发现,以1.45 mg蛋白/ g葡聚糖[30纤维二糖酶单位(CBU)/ g葡聚糖]的β-葡萄糖苷酶(Novozyme 188)负载足以消除纤维二糖抑制剂,而2.9 mg蛋白/ g葡聚糖(60 CBU / g葡聚糖)是饱和极限。木聚糖酶和果胶酶的补充可以显着提高纤维素和半纤维素的转化率。葡萄糖和木糖的产量随酶负载的增加而增加,但在高负载下,增长趋势变低。与木聚糖酶相比,果胶酶更有效地促进纤维素和半纤维素的水解。添加0.12 mg蛋白/ g葡聚糖的果胶酶可使葡萄糖和木糖的产率分别提高7.5%和29.3%。

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