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Enhancement of enzymatic saccharification of corn stover with sequential Fenton pretreatment and dilute NaOH extraction

机译:连续Fenton预处理和稀NaOH萃取增强玉米秸秆的酶促糖化作用

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In this study, an effective method by the sequential Fenton pretreatment and dilute NaOH extraction (FT-AE) was chosen for pretreating corn stover. Before dilute NaOH (0.75 wt%) extraction at 90 degrees C for 1 h, Fenton reagent (0.95 g/L of FeSO4 and 29.8 g/L of H2O2) was employed to pretreat CS at a solid/liquid ratio of 1/20 (w/w) at 35 degrees C for 30 min. The changes in the cellulose structural characteristics (porosity, morphology, and crystallinity) of the pretreated solid residue were correlated with the enhancement of enzymatic saccharification. After being enzymatically hydrolyzed for 72 h, the reducing sugars and glucose from the hydrolysis of 60 g/L FT-AE-CS pretreated could be obtained at 40.96 and 23.61 g/L, respectively. Finally, the recovered hydrolyzates containing glucose had no inhibitory effects on the ethanol fermenting microorganism. In conclusion, the sequential Fenton pretreatment and dilute NaOH extraction has high potential application in future. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,选择了一种通过连续Fenton预处理和稀NaOH提取(FT-AE)进行预处理的有效方法。在90°C的稀NaOH(0.75 wt%)萃取1 h之前,使用Fenton试剂(0.95 g / L的FeSO4和29.8 g / L的H2O2)固/液比为1/20( w / w)在35摄氏度下持续30分钟。预处理的固体残留物的纤维素结构特征(孔隙度,形态和结晶度)的变化与酶促糖化作用的增强有关。酶水解72小时后,经预处理的60 g / L FT-AE-CS的水解得到的还原糖和葡萄糖分别为40.96和23.61 g / L。最后,回收的含有葡萄糖的水解产物对乙醇发酵微生物没有抑制作用。综上所述,Fenton连续预处理和稀NaOH提取在未来具有很高的应用潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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