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Fermentation medium and oxygen transfer conditions that maximize the xylose conversion to ethanol by Pichia stipitis

机译:发酵培养基和氧气转移条件,可使木霉毕赤酵母最大程度地将木糖转化为乙醇

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摘要

The xylose conversion to ethanol by Pichia stipitis was studied. In a first step, the necessity of supplementing the fermentation medium with urea, MgSO4 × 7H2O, and/or yeast extract was evaluated through a 23 full factorial design. The simultaneous addition of these three nutritional sources to the fermentation medium, in concentrations of 2.3, 1.0, and 3.0 g/l, respectively, showed to be important to improve the ethanol production in detriment of the substrate conversion to cell. In a second stage, fermentation assays performed in a bioreactor under different KLa (volumetric oxygen transfer coefficient) conditions made possible understanding the influence of the oxygen transfer on yeast performance, as well as to define the most suitable range of values for an efficient ethanol production. The most promising region to perform this bioconversion process was found to be between 2.3 and 4.9 h−1, since it promoted the highest ethanol production results with practically exhaustion of the xylose from the medium. These findings contribute for the development of an economical and efficient technology for large scale production of second generation ethanol.
机译:研究了树干毕赤酵母将木糖转化为乙醇的过程​​。第一步,通过23全因子设计评估了向发酵培养基中补充尿素,MgSO4×7H2O和/或酵母提取物的必要性。将这三种营养来源分别以2.3、1.0和3.0 g / l的浓度同时添加到发酵培养基中显示出重要的作用是提高乙醇产量,从而不利于底物转化为细胞。在第二阶段,在生物反应器中在不同的KLa(体积氧气传递系数)条件下进行的发酵测定使了解氧气传递对酵母性能的影响成为可能,并为高效乙醇生产​​定义了最合适的值范围。发现执行该生物转化过程的最有希望的区域在2.3至4.9 h-1之间,因为它促进了乙醇的最高生产,并且实际上从培养基中耗尽了木糖。这些发现有助于发展用于大规模生产第二代乙醇的经济有效的技术。

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