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首页> 外文期刊>The Korean journal of chemical engineering >Comparison of bioethanol production of simultaneous saccharification & fermentation and separation hydrolysis & fermentation from cellulose-rich barley straw
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Comparison of bioethanol production of simultaneous saccharification & fermentation and separation hydrolysis & fermentation from cellulose-rich barley straw

机译:富纤维素大麦秸秆同时糖化与发酵,分离水解与发酵的生物乙醇生产比较

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摘要

Cellulose rich barley straw, which has a glucan content of 62.5%, followed by dilute acid pretreatment, was converted to bioethanol by simultaneous saccharification and fermentation (SSF). The optimum fractionation conditions for barley straw were an acid concentration of 1% (w/v), a reaction temperature of 158 ℃ and a reaction time of 15 min. The maximum saccharification of glucan in the fractionated barley straw was 70.8% in 72 h at 60 FPU/g-glucan, while the maximum digestibility of the untreated straw was only 18.9%. With 6% content WIS (water insoluble solid) for the fractionated barley straw, 70.5 and 83.2% of the saccharification yield were in SHF and SSF (representing with glucose equivalent), respectively, and a final ethanol concentration of 18.46 g/L was obtained under the optimized SSF conditions: 34 ℃ with 15 FPU/g-glucan enzyme loading and 1 g dry yeast cells/L. The results demonstrate that the SSF process is more effective than SHF for bioethanol production by around 18%.
机译:通过同时糖化和发酵(SSF)将葡聚糖含量为62.5%的富纤维素大麦秸秆进行稀酸预处理。大麦秸秆的最佳分馏条件为酸浓度为1%(w / v),反应温度为158℃,反应时间为15分钟。在60 FPU / g-葡聚糖中,经分馏的大麦秸秆中葡聚糖的最大糖化度在72小时内为70.8%,而未经处理的秸秆的最大消化率仅为18.9%。分级大麦秸秆的WIS(水不溶性固体)含量为6%,在SHF和SSF(以葡萄糖当量表示)中的糖化收率分别为70.5和83.2%,最终乙醇浓度为18.46 g / L在优化的SSF条件下:34℃,负载15 FPU / g-葡聚糖酶和1 g干酵母细胞/ L。结果表明,SSF工艺比SHF高效生产生物乙醇约18%。

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