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Pretreatment and hydrolysis of cellulosic agricultural wastes with a cellulaseproducing Streptomyces for bioethanol production

机译:纤维素农业废弃物的预处理和水解具有纤维素酰亚乙醇生产的纤维素蛋白酶发作

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Production of reducing sugar by hydrolysis of corncob material with Streptomyces sp. cellulase and ethanol fermentation of cellulosic hydrolysate was investigated. Cultures of Streptomyces sp. T3-1 improved reducing sugar yields with the production of CMCase, Avicelase and β-glucosidase activity of 3.8, 3.9 and 3.8 IU/ml, respectively. CMCase, Avicelase, and β- glucosidase produced by the Streptomyces sp. T3-1 favored the conversion of cellulose to glucose. It was recognized that the synergistic interaction of endoglucanase, exoglucanase and β-glucosidase resulted in efficient hydrolysis of cellulosic substrate. After 5 d of incubation, the overall reducing sugar yield reached 53.1 g/100g dried substrate. Further fermentation of cellulosic hydrolysate containing 40.5 g/l glucose was performed using Saccharomyces cerevisiae BCRC 21812, 14.6 g/l biomass and 24.6 g/l ethanol was obtained within 3 d. The results have significant implications and future applications regarding to production of fuel ethanol from agricultural cellulosic waste.
机译:生产通过用链霉菌玉米芯材料的水解还原糖。纤维素水解产物的纤维素酶和乙醇发酵进行了研究。链霉菌的培养。 T3-1提高还原糖的产率与生产CMC酶,微晶纤维素和3.8,3.9和3.8 IU / ml的β葡糖苷酶活性,分别。 CMC酶,微晶纤维素,以及由链霉菌属产生的β-葡糖苷酶。 T3-1青睐纤维素的葡萄糖转化。人们认识到,内切葡聚糖酶,外切葡聚糖酶和β葡糖苷酶的协同相互作用,导致在纤维素底物的有效水解。 5 d孵育后,将总还原糖产量达到53.1克/ 100克干燥的基材。使用酿酒酵母BCRC 21812,14.6克/升的生物量和24.6克/升3 d内得到乙醇进行含有40.5克/ l葡萄糖的纤维素水解产物的进一步发酵。结果有显著的影响,并就生产从农业废弃物的纤维素燃料乙醇的应用前景。

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