首页> 外文会议>Symposium on Biotechnology for Fuels and Chemicals; 20050501-04; Denver,CO(US) >Optimal Conditions for Alkaline Detoxification of Dilute-Acid Lignocellulose Hydrolysates
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Optimal Conditions for Alkaline Detoxification of Dilute-Acid Lignocellulose Hydrolysates

机译:稀酸木质纤维素水解液碱性解毒的最佳条件

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Alkaline detoxification strongly improves the fermentability of dilute-acid hydrolysates in the production of bioethanol from lignocellulose with Saccharomyces cerevisiae. New experiments were performed with NH_4OH and NaOH to define optimal conditions for detoxification and make a comparison with Ca(OH)_2 treatment feasible. As too harsh conditions lead to sugar degradation, the detoxification treatments were evaluated through the balanced ethanol yield, which takes both the ethanol production and the loss of fermentable sugars into account. The optimization treatments were performed as factorial experiments with 3-h duration and varying pH and temperature. Optimal conditions were found roughly in an area around pH 9.0/60℃ for NH_4OH treatment and in a narrow area stretching from pH 9.0/80℃ to pH 12.0/30℃ for NaOH treatment. By optimizing treatment with NH_4OH, NaOH, and Ca(OH)_2, it was possible to find conditions that resulted in a fermentability that was equal or better than that of a reference fermentation of a synthetic sugar solution without inhibitors, regardless of the type of alkali used. The considerable difference in the amount of precipitate generated after treatment with different types of alkali appears critical for industrial implementation.
机译:在用酿酒酵母从木质纤维素生产生物乙醇时,碱性解毒可大大提高稀酸水解产物的发酵能力。用NH_4OH和NaOH进行了新的实验,确定了最佳的排毒条件,并与Ca(OH)_2处理进行了比较。由于苛刻的条件会导致糖降解,因此通过平衡的乙醇收率评估了排毒处理的效率,该收乙醇既考虑了乙醇的生产,又考虑了可发酵糖的损失。最优化处理是作为析因实验进行的,持续时间为3小时,并且pH和温度均发生变化。在NH_4OH处理中,最佳条件大致位于pH 9.0 / 60℃左右,而在NaOH处理中,最窄条件位于pH 9.0 / 80℃至pH 12.0 / 30℃之间。通过优化用NH_4OH,NaOH和Ca(OH)_2的处理,可以找到导致发酵性能等于或优于无抑制剂的合成糖溶液参比发酵的条件的条件,而不管其类型如何。用碱。用不同类型的碱处理后产生的沉淀物数量上的显着差异对于工业实施而言似乎至关重要。

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