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Optimization of Simultaneous Saccharification and Fermentation Incubation Time Using Cellulose Enzyme for Sugarcane Bagasse on The Second-Generation Bioethanol Production Technology

机译:用纤维素酶对二代生物乙醇生产技术的纤维素酶进行同时糖化和发酵孵育时间的优化

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Bioethanol production using lignocellulosic materials (the second-generation technology) was consist of pretreatment and simultaneous saccharification and fermentation (SSF) process. This research optimize the SSF incubation time using cellulose enzyme and Saccharomyces cerevisiae combination for sugarcane bagasse. The bagasse was pre-treated by delignification with NaOH. The SSF was conducted by Sacharomyches cereviceae, cellulose enzymes (Trichoderma reesei) and nutrients combination during 3 d, 5 d and 7 d as incubation time variables. The optimum result was 0.748 5 % of ethanol concentration or dry weight conversion by 11.810 5 g · L~(-1) which obtained after 5 d incubation time based on ethanol conversion, microbiology test and sugar reduction concentration.
机译:使用木质纤维素材料(第二代技术)的生物乙醇生产由预处理和同时糖化和发酵(SSF)工艺组成。本研究优化了使用纤维素酶的SSF孵育时间和糖蛋白酿酒酵母组合。 Bagasse是通过与NaOH的卖方预处理的。在3d,5 d和7d期间,SSF由Sacharomiches脑膜,纤维素酶(Trichoderma Reesei)和营养物组合作为孵育时间变量。最佳结果为0.748%的乙醇浓度或干重转化的0.748%,通过11.810 5g·L〜(-1),其在5d基于乙醇转化,微生物检测和糖还原浓度之后获得的5d孵育时间。

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