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Continuous Cellulosic Bioethanol Fermentation by Cyclic Fed-Batch Cocultivation

机译:循环补料分批连续培养纤维素生物乙醇

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Cocultivation of cellulolytic and saccharolytic microbial populations is a promising strategy to improve bioethanol production from the fermentation of recalcitrant cellulosic materials. Earlier studies have demonstrated the effectiveness of cocultivation in enhancing ethanolic fermentation of cellulose in batch fermentation. To further enhance process efficiency, a semicontinuous cyclic fed-batch fermentor configuration was evaluated for its potential in enhancing the efficiency of cellulose fermentation using cocultivation. Cocultures of cellulolytic Clostridium thermocellum LQRI and saccharolytic Thermoanaerobacter pseudethanolicus strain X514 were tested in the semicontinuous fermentor as a model system. Initial cellulose concentration and pH were identified as the key process parameters controlling cellulose fermentation performance in the fixed-volume cyclic fed-batch coculture system. At an initial cellulose concentration of 40 g liter?1, the concentration of ethanol produced with pH control was 4.5-fold higher than that without pH control. It was also found that efficient cellulosic bioethanol production by cocultivation was sustained in the semicontinuous configuration, with bioethanol production reaching 474 mM in 96 h with an initial cellulose concentration of 80 g liter?1 and pH controlled at 6.5 to 6.8. These results suggested the advantages of the cyclic fed-batch process for cellulosic bioethanol fermentation by the cocultures.
机译:纤维素分解和糖酵解微生物种群的共培养是提高顽固纤维素材料发酵生物乙醇产量的有前途的策略。较早的研究表明,在分批发酵中,共培养对增强纤维素乙醇发酵的有效性。为了进一步提高工艺效率,评估了半连续循环分批补料发酵罐配置在使用共培养提高纤维素发酵效率方面的潜力。在半连续发酵罐中作为模型系统测试了纤维素分解热纤梭菌LQRI和糖酵解热厌氧拟杆菌乙醇菌株X514的共培养。初始纤维素浓度和pH被确定为控制固定体积循环补料分批共培养系统中纤维素发酵性能的关键工艺参数。在初始纤维素浓度为40 g升?1的情况下,用pH控制的乙醇浓度比不用pH控制的乙醇高4.5倍。还发现通过共培养有效的纤维素生物乙醇以半连续构型持续存在,在96小时内生物乙醇的产量达到474mM,初始纤维素浓度为80g升·l 1,pH控制在6.5-6.8。这些结果表明了循环补料分批工艺对于通过共培养的纤维素生物乙醇发酵的优势。

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