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首页> 外文期刊>Archives of Environmental Protection >Production of second generation bioethanol from straw during simultaneous microbial saccharification and fermentation
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Production of second generation bioethanol from straw during simultaneous microbial saccharification and fermentation

机译:同时微生物糖化和发酵过程中秸秆的第二代生物乙醇生产

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The aim of the study was to evaluate the biochemical possibilities of converting waste lignocellulosic biomass to second generation bioethanol. Three substrates were used in the research: barley straw, rye straw and triticale straw. In the first stage of the research bacterial strains capable of converting waste biomass to produce sugars used to produce energy-useful ethanol were selected. Of the eight strains isolated the three with the highest potential were selected on the basis of activity index value. The raw materials were subjected to enzymatic hydrolysis using the simultaneous saccharification and fermentation method (SSF process). Based on the conducted research, it was found that the examined waste biomass is suitable for the production of cellulosic bioethanol. As a result of distillation 10% and 15% (v/v) ethanol was obtained, depending on the strain and the type of raw material. It was demonstrated that the bacterial strain had a greater impact on the effectiveness of the process than the type of straw used.
机译:该研究的目的是评估将废木质纤维素生物质转化为第二代生物乙醇的生物化学可能性。研究中使用了三个基材:大麦稻草,黑麦秸秆和小黑麦秸秆。在研究细菌菌株的第一阶段,能够转化废生物质以产生用于生产能量有用乙醇的糖的糖。在活动指数值选择八个菌株中孤立的三个具有最高潜力的菌株。使用同时糖化和发酵方法(SSF过程)对原料进行酶水解。基于进行的研究,发现检测的废物化物质适用于生产纤维素生物乙醇。由于蒸馏10%和15%(v / v)乙醇,取决于菌株和原料的类型。据证明,细菌菌株对过程的有效性产生了更大的影响,而不是所用的稻草类型。

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