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Co-culture of Zymomonas mobilis and Scheffersomyces stipitis immobilized in polymeric membranes for fermentation of glucose and xylose to ethanol

机译:Zymomonas Mobilis和Scheffersomyces智能培养,在聚合物膜中固定,用于将葡萄糖和木糖发酵到乙醇中

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摘要

Submerged hollow fiber membrane bioreactor (SHFMB) was fabricated and operated to co-culture Zymomonas mobilis and Scheffersomyces stipitis for fermentation of glucose and xylose mixture. Suspended Z. mobilis and S. stipitis in co-culture exhibited poor xylose fermentation due to substrate/product inhibition and catabolite repression. Immobilization in polymeric membranes was effective in alleviating these inhibitions in the SHFMB, which resulted in concomitant fermentation of glucose and xylose at initial glucose and xylose concentrations of 20-80 g L-1 and 10-40 g L-1, respectively. Selective aeration in SHFMB resulted in 100% glucose and > 70% xylose fermentation within 48 h, producing 36.7 g L-1 ethanol from 90 g L-1 sugar mixture. Partial immobilization in the membranes allowed Z. mobilis to diffuse in suspension under benign condition, whereas S. stipitis remained inside membrane pores throughout the operation. Xylose fermentation in the SHFMB could be enhanced further by increasing the number of S. stipitis immobilized membranes. Cell immobilization in the SHFMB was stable during 12 consecutive batch runs over 24 days, and exhibited improved xylose fermentation due to gradual increase in S. stipitis accumulation within the membranes. These results indicate that SHFMB can be promising for co-culture of Z. mobilis and S. stipitis in fermentation of mixed sugars from lignocellulosic hydrolysate.
机译:制造浸没式中空纤维膜生物反应器(SHFMB)并操作并操作以共同培养Zymomonas Mobililis和Scheffersomyces稳定炎,用于发酵葡萄糖和木糖混合物。悬浮的Z.Mobilis和S.智能炎在共培养上由于基质/产物抑制和分解代谢物抑制而表现出差的木糖发酵。在聚合物膜中的固定是有效的,可减轻SHFMB中的这些抑制,其在初始葡萄糖和木糖浓度下伴随葡萄糖和木糖分别为20-80g L-1和10-40g L-1。 SHFMB中的选择性通气导致100%葡萄糖和> 70%木糖发酵在48小时内,从90g L-1糖混合物中产生36.7g L-1乙醇。膜中的部分固定化使得Mobilis在良性条件下悬浮在悬浮液中扩散,而S.S患者在整个操作过程中留在膜孔隙内。通过增加S.稳定炎固定的膜的数量,可以进一步增强SHFMB中的木糖发酵。 SHFMB中的细胞固定化在24天内连续12个批量期间稳定,并且由于膜内的S.智能炎积累的逐渐增加,表现出改善的木糖发酵。这些结果表明,SHFMB可以对来自木质纤维素水解产物的混合糖发酵的Z.Mobilis和S.Stipitis的共同培养。

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