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首页> 外文期刊>Biotechnology for Biofuels >Helically agitated mixing in dry dilute acid pretreatment enhances the bioconversion of corn stover into ethanol
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Helically agitated mixing in dry dilute acid pretreatment enhances the bioconversion of corn stover into ethanol

机译:干稀酸预处理中的螺旋搅拌混合可增强玉米秸秆向乙醇的生物转化

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Background Dry dilute acid pretreatment at extremely high solids loading of lignocellulose materials demonstrated promising advantages of no waste water generation, less sugar loss, and low steam consumption while maintaining high hydrolysis yield. However, the routine pretreatment reactor without mixing apparatus was found not suitable for dry pretreatment operation because of poor mixing and mass transfer. In this study, helically agitated mixing was introduced into the dry dilute acid pretreatment of corn stover and its effect on pretreatment efficiency, inhibitor generation, sugar production, and bioconversion efficiency through simultaneous saccharification and ethanol fermentation (SSF) were evaluated. Results The overall cellulose conversion taking account of cellulose loss in pretreatment was used to evaluate the efficiency of pretreatment. The two-phase computational fluid dynamics (CFD) model on dry pretreatment was established and applied to analyze the mixing mechanism. The results showed that the pretreatment efficiency was significantly improved and the inhibitor generation was reduced by the helically agitated mixing, compared to the dry pretreatment without mixing: the ethanol titer and yield from cellulose in the SSF reached 56.20 g/L and 69.43% at the 30% solids loading and 15 FPU/DM cellulase dosage, respectively, corresponding to a 26.5% increase in ethanol titer and 17.2% increase in ethanol yield at the same fermentation conditions. Conclusions The advantage of helically agitated mixing may provide a prototype of dry dilute acid pretreatment processing for future commercial-scale production of cellulosic ethanol.
机译:背景技术在木质纤维素材料的固体含量极高的固含量下进行干稀酸预处理显示出有希望的优点,即不产生废水,较少的糖损失和较低的蒸汽消耗,同时保持较高的水解产率。然而,由于混合和传质不良,发现没有混合装置的常规预处理反应器不适合干式预处理操作。在这项研究中,将螺旋搅拌混合引入玉米秸秆的干稀酸预处理中,并评估了其通过同时糖化和乙醇发酵(SSF)对预处理效率,抑制剂生成,糖生产和生物转化效率的影响。结果使用考虑了纤维素在预处理中的损失的总纤维素转化率来评估预处理的效率。建立了干法预处理的两相计算流体动力学模型,并将其用于分析混合机理。结果表明,与不进行混合的干式预处理相比,通过螺旋搅拌混合可显着提高预处理效率,并减少抑制剂的产生:SSF中的乙醇滴定度和纤维素的收率分别达到56.20 g / L和69.43%。在相同的发酵条件下,固体含量分别为30%和FPU / DM纤维素酶用量为15,分别对应于乙醇效价增加26.5%和乙醇产量增加17.2%。结论螺旋搅拌混合的优势可为干法稀酸预处理工艺提供原型,以用于未来商业规模的纤维素乙醇生产。

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