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Two-Stage Aeration Fermentation Strategy to Improve Bioethanol Production by Scheffersomyces stipitis

机译:两阶段曝气发酵策略以提高结节酒酵母的生物乙醇产量

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Hardwood spent sulfite liquor (HSSL) is a by-product from pulp industry with a high concentration of pentose sugars, besides some hexoses suitable for bioethanol production by Scheffersomyces stipitis. The establishment of optimal aeration process conditions that results in specific microaerophilic conditions required by S. stipitis is the main challenge for ethanol production. The present study aimed to improve the ethanol production from HSSL by S. stipitis through a two-stage aeration fermentation. Experiments with controlled dissolved oxygen tension (DOT) in the first stage and oxygen restriction in the second stage were carried out. The best results were obtained with DOT control at 50% in the first stage, where the increase of oxygen availability provided faster growth and higher biomass yield, and no oxygen supply with an agitation rate of 250 rpm, in the second stage allowed a successful induction of ethanol production. Fermentation using 60% of HSSL ( v / v ) as substrate for S. stipitis provided a maximum specific growth rate of 0.07 h ?1 , an ethanol productivity of 0.04 g L h ?1 and an ethanol yield of 0.39 g g ?1 , respectively. This work showed a successful two-stage aeration strategy as a promising aeration alternative for bioethanol production from HSSL by S. stipitis .
机译:硬木废亚硫酸盐液(HSSL)是纸浆工业的副产品,含有高浓度的戊糖,此外还有一些适合用于结节叶拟南芥生产生物乙醇的己糖。建立最佳的通气过程条件以导致S.stipitis所需要的特定微需氧条件是乙醇生产的主要挑战。本研究旨在通过两阶段曝气发酵来提高由链球菌引起的HSSL乙醇生产。进行了第一阶段控制溶氧张力(DOT)和第二阶段限制氧气的实验。在第一阶段中,将DOT控制在50%时可获得最佳结果,第二阶段中氧利用率的增加提供了更快的生长和更高的生物量产量,并且在第二阶段中没有氧气供应(搅拌速度为250 rpm)可以成功诱导乙醇生产。使用60%的HSSL(v / v)作为定点链球菌的底物进行发酵,最大比生长速率为0.07 h?1,乙醇生产率为0.04 g L h?1,乙醇产率为0.39 gg?1 。这项工作显示了成功的两阶段曝气策略,作为一种有希望的替代方法,可用于由S. stipitis从HSSL生产生物乙醇。

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