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Accelerated bioethanol fermentation by using a novel yeast immobilization technique: Microtube array membrane

机译:通过使用新型酵母固定技术加速生物乙醇发酵:微管阵列膜

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Cell immobilization is a way to isolate or localize intact cells in a certain space and maintain their catalytic activity. Immobilized cells can effectively reduce the negative effects of inhibitors and the processing cost of inoculum preparation for continuous or fed-batch fermentation of microorganisms. In this study, a novel yeast immobilization technique using renewable poly-L-lactic acid (PLLA) microtube array membrane (MTAM) was thoroughly evaluated for bioethanol fermentation. PLLA-MTAM was shown to be stable in 15% (v/v) ethanol solution during shaking cultivation. A yeast encapsulation efficiency of 67-70% was obtained, and the yeasts in MTAMs with greater porosity showed greater bioethanol productivity. The MTAM-immobilized Kluyverornyces marxianus, prepared using in situ and siphon methods, were evaluated using 5% (w/v) glucose fermentation. Improved glucose consumption and bioethanol production were observed in batch bioethanol fermentation. In 7 cycles during repeated-batch fermentation, the immobilized yeasts prepared using the in situ method showed a maximum C-EtOH of 24.23 g/L, maximum Y-P/S of 0.48 g/g, and r P-EtOH of 2.69 g/L h. Our data indicated that the PLLA-MTAM immobilized yeasts significantly enhanced bioethanol productivity and was a novel, promising technology for bioethanol fermentation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:细胞固定化是一种将完整细胞分离或定位在一定空间中并维持其催化活性的方法。固定化的细胞可以有效减少抑制剂的负面影响,并减少用于微生物连续或分批发酵的接种制剂的加工成本。在这项研究中,彻底评估了使用可再生聚L-乳酸(PLLA)微管阵列膜(MTAM)的新型酵母固定技术,以进行生物乙醇发酵。在振荡培养过程中,PLLA-MTAM在15%(v / v)的乙醇溶液中显示出稳定的性能。获得了67-70%的酵母包封效率,并且具有较高孔隙率的MTAM中的酵母显示出更高的生物乙醇生产率。使用5%(w / v)葡萄糖发酵评估使用原位和虹吸法制备的MTAM固定的马克斯克鲁维酵母。在分批生物乙醇发酵中观察到改善的葡萄糖消耗和生物乙醇生产。在分批发酵过程中的7个循环中,使用原位方法制备的固定化酵母显示最大C-EtOH为24.23 g / L,最大YP / S为0.48 g / g,r P-EtOH为2.69 g / L H。我们的数据表明,固定化PLLA-MTAM的酵母显着提高了生物乙醇的生产率,并且是一种新颖的,有前途的生物乙醇发酵技术。 (C)2015 Elsevier Ltd.保留所有权利。

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