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Integrated bioethanol production from mixtures of corn and corn stover

机译:从玉米和玉米秸秆的混合物中综合生物乙醇生产

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摘要

Conversion of lignocellulosic biomass, such as corn stover (CS), to ethanol has encountered issues of inhibition from degradation products, low ethanol titer and low ethanol productivity. This work integrated CS into corn ethanol process for effective conversion. CS was pretreated using either dilute alkali or dilute acid pretreatment. The pretreated CS was enzymatically hydrolyzed and then mixed with liquefied corn for ethanol fermentation. Fermentation strains, substrate mixing ratios and fed-batch strategy were investigated. The mixture of alkali pretreated CS and corn at solids loadings of 10% and 20%, respectively, resulted in 92.30 g/L ethanol. Ethanol titer was further improved to 96.43 g/L with a fed-batch strategy. The mixture of dilute acid pretreated CS and corn achieved a better performance, leading to 104.9 g/L ethanol with 80.47% ethanol yield and a productivity as high as 2.19 g/L/h. This work demonstrated effective conversion of CS and corn together to ethanol.
机译:将木质纤维素生物质(例如玉米秸秆(CS))转化为乙醇,遇到了从降解产物,低乙醇滴度和低乙醇生产率的抑制问题。 这项工作将CS集成到玉米乙醇过程中进行有效转化。 使用稀碱或稀酸预处理进行预处理Cs。 预处理的Cs酶促水解,然后与液化玉米混合,用于乙醇发酵。 研究了发酵菌,底物混合比和补料分批策略。 碱预处理的Cs和玉米的混合物分别为10%和20%的固体载量,得到92.30g / l乙醇。 乙醇滴度进一步改善至96.43克/升,含有氟批策略。 稀酸预处理的Cs和玉米的混合物实现了更好的性能,导致104.9g / L乙醇,乙醇产率为80.47%,高达2.19g / L / h的生产率。 这项工作表明,将Cs和玉米的有效转化为乙醇。

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