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The optimized CO2-added ammonia explosion pretreatment for bioethanol production from rice straw

机译:优化的CO2加氨爆炸预处理用于稻草生产生物乙醇

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摘要

A CO2-added ammonia explosion pretreatment was performed for bioethanol production from rice straw. The pretreatment conditions, such as ammonia concentration, CO2 loading level, residence time, and temperature were optimized using response surface methodology. The response for optimization was defined as the glucose conversion rate. The optimized pretreatment conditions resulting in maximal glucose yield (93.6 %) were determined as 14.3 % of ammonia concentration, 2.2 MPa of CO2 loading level, 165.1 °C of temperature, and 69.8 min of residence time. Scanning electron microscopy analysis showed that pretreatment of rice straw strongly increased the surface area and pore size, thus increasing enzymatic accessibility for enzymatic saccharification. Finally, an ethanol yield of 97 % was achieved via simultaneous saccharification and fermentation. Thus, the present study suggests that CO2-added ammonia pretreatment is an appropriate process for bioethanol production from rice straw.Electronic supplementary materialThe online version of this article (doi:10.1007/s00449-014-1165-x) contains supplementary material, which is available to authorized users.
机译:为了从稻草中生产生物乙醇,进行了添加二氧化碳的氨气爆炸预处理。使用响应表面方法优化了预处理条件,例如氨浓度,CO2负载量,停留时间和温度。优化的响应定义为葡萄糖转化率。最佳的预处理条件导致最大的葡萄糖收率(93.6%)被确定为氨浓度的14.3%,CO2负载水平2.2 MPa,温度165.1°C和停留时间69.8分钟。扫描电子显微镜分析表明,稻草的预处理极大地增加了表面积和孔径,从而增加了酶促糖化的酶可及性。最后,通过同时进行糖化和发酵,乙醇的收率为97%。因此,本研究表明添加CO2的氨气预处理是从稻草中生产生物乙醇的合适方法。电子补充材料本文的在线版本(doi:10.1007 / s00449-014-1165-x)包含补充材料可供授权用户使用。

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