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Alternative Lime Pretreatment of Corn Stover for Second-Generation Bioethanol Production

机译:第二代生物乙醇生产的玉米秸秆替代石灰预处理

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摘要

In this work, a delignification process, using lime (Ca(OH)2) as an alternative alkali, was evaluated to improve enzymatic saccharification of corn stover cellulose, with the final goal of obtaining second-generation bioethanol. For that, an experimental design was conducted in order to assay the effect of temperature, lime loading, and time on the corn stover fractionation and enzymatic susceptibility of cellulose. Under conditions evaluated, lime pretreatment was selective for the recovery of cellulose (average of 91%) and xylan (average of 75.3%) in the solid phase. In addition, operating in mild conditions, a delignification up to 40% was also attained. On the other hand, a maximal cellulose-to-glucose conversion (CGCMAX) of 89.5% was achieved using the solid, resulting from the treatment carried out at 90 °C for 5 h and lime loading of 0.4 g of Ca(OH)2/g of corn stover. Finally, under selected conditions of pretreatment, 28.7 g/L (or 3.6% v/v) of bioethanol was produced (corresponding to 72.4% of ethanol conversion) by simultaneous saccharification and fermentation. Hence, the process, based on an alternative alkali proposed in this work, allowed the successful production of biofuel from the important and abundant agro-industrial residue of corn stover.
机译:在这项工作中,脱木素工艺,采用石灰(的Ca(OH)2)作为替代的碱,进行了评价,以提高玉米秸秆中纤维素的酶糖化,与获得第二代生物乙醇的最终目标。对于这一点,实验设计,以测定温度,石灰加载和时间对玉米秸秆分馏和纤维素的酶易感性效果进行。下评估条件,石灰预处理是有选择性的在固相中纤维素(平均91%)和木聚糖(平均75.3%)的回收。另外,在温和的条件下操作,一个脱木素高达40%也实现。在另一方面,最大纤维素到葡萄糖的转化为89.5%(CGCMAX)使用所述固体实现,导致从处理在90℃下保持5小时进行,石灰负荷为0.4克Ca(OH)2 /克玉米秸秆。最后,预处理的选择的条件下,28.7mmol克/升(或3.6%V / V)的生物乙醇制备通过同时糖化和发酵(对应于乙醇转化的72.4%)。因此,该方法的基础上,在这项工作中提出了另一种碱,允许成功地生产生物燃料的从玉米秸秆的重要和丰富的农工业残渣。

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