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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Boosting the fermentable sugar yield and concentration of corn stover by magnesium oxide pretreatment for ethanol production
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Boosting the fermentable sugar yield and concentration of corn stover by magnesium oxide pretreatment for ethanol production

机译:通过氧化镁预处理来提高氧化镁预处理的可发酵的糖产量和玉米秸秆浓度的乙醇生产

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MgO pretreatment was investigated to boost the fermentable sugars derived from corn stover with LHW pretreatment as control. Compared to LHW pretreatment, MgO pretreatment caused twice hemicellulose recovery (42 vs 21%). Double hemicellulose recovery not only didn't affect glucose yield but increased xylose yield by 13% and total sugar yield by 6% under the optimal conditions (pretreatment: 10% biomass loading, 0.1 mol/L MgO, 190 degrees C, and 40 min; hydrolysis: pretreated biomass loading of 10 g/100 mL, enzyme loading of 1 mL/g pretreated biomass, 50 degrees C, and 120 h). A total sugar concentration of 50 g/L was obtained under the above conditions. Besides, the enzyme component hydrolyzing xylan may be prone to deactivation by lignin residues in pretreated biomass. Both SEM and FTIR analyses indicate that MgO effectively disrupted the biomass structures and enlarged the exposed surface area of carbohydrates, thus boosting the enzymatic hydrolysis and fermentable sugars for ethanol production.
机译:研究了MgO预处理,以使来自玉米秸秆衍生的可发酵糖用LHW预处理作为对照。与LHW预处理相比,MgO预处理造成两次的半纤维素回收率(42 vs 21%)。双半纤维素恢复不仅不影响葡萄糖产量,而且在最佳条件下将木糖产率增加13%,总糖产量增加6%(预处理:10%生物量负载,0.1mol / L MgO,190℃和40分钟;水解:预处理的生物质负载量10g / 100ml,酶负载量为1ml / g预处理生物质,50℃和120h)。在上述条件下获得50g / L的总糖浓度。此外,酶组分水解的木聚糖可能易于通过预处理生物质中的木质素残留物去激活。 SEM和FTIR分析都表明MGO有效地破坏了生物质结构并扩大了碳水化合物的暴露表面面积,从而提高了酶水解和可发酵的乙醇生产的可发酵糖。

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