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首页> 外文期刊>Waste and biomass valorization >Enzymatic Hydrolysis of Fruit Peels and Other Lignocellulosic Biomass as a Source of Sugar
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Enzymatic Hydrolysis of Fruit Peels and Other Lignocellulosic Biomass as a Source of Sugar

机译:果皮和其他木质纤维素生物质的酶水解作为糖的来源

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Glucose and reducing sugars were obtained from corn cobs, orange and pomegranate peels by employing different enzymatic hydrolysis and pretreatment strategies. For the hydrolysis of corn cobs, effect of alkaline pretreatment was examined. Effect of cellobiase loading on hydrolysis was also investigated. Glucose content was measured using a Blood Glucose Monitor. When cellobiase was also added to hydrolysate, glucose and TRS yield increased from 20 and 34% respectively. Unlike corncobs, alkaline pretreatment was not applied to pomegranate and orange peels due to low lignin content. For the hydrolysis of these substrates, a pectic enzyme mixture was also used. Reasonable glucose and total reducing sugar yield from pomegranate and orange peel hydrolysis was achieved without any pretreatment. It was shown that while efficient corn cob hydrolysis needed synergistic effect of cellulase and beta-glucosidase combination, fruit peels hydrolysis needed synergistic effect of cellulase, beta-glucosidase and pectinase.
机译:通过采用不同的酶促水解和预处理策略,从玉米芯,橙皮和石榴皮中获得葡萄糖和还原糖。对于玉米芯的水解,检查了碱性预处理的效果。还研究了纤维二糖酶负载对水解的影响。使用血糖监测仪测量葡萄糖含量。当将纤维二糖酶也加入到水解物中时,葡萄糖和TRS的产率分别从20%和34%增加。与玉米芯不同,由于木质素含量低,因此未对石榴和橙皮进行碱性预处理。为了水解这些底物,还使用了果胶酶混合物。无需任何预处理即可实现石榴和橙皮水解产生的合理葡萄糖和总还原糖产量。结果表明,虽然有效的玉米芯水解需要纤维素酶和β-葡萄糖苷酶组合的协同作用,但果皮水解需要纤维素酶,β-葡萄糖苷酶和果胶酶的协同作用。

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