首页> 外文期刊>Applied Biochemistry and Biotechnology >Improvement of Bioethanol Productivity of Immobilized Saccharomyces Bayanus with Using Sodium Alginate-Graft-Poly(N-Vinyl-2-Pyrrolidone) Matrix
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Improvement of Bioethanol Productivity of Immobilized Saccharomyces Bayanus with Using Sodium Alginate-Graft-Poly(N-Vinyl-2-Pyrrolidone) Matrix

机译:海藻酸钠-接枝-聚(N-乙烯基-2-吡咯烷酮)基质提高固定化巴氏酵母生物乙醇的生产能力

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摘要

In this study, immobilization conditions and bioethanol production characteristics of immobilized Saccharomyces bayanus were investigated into sodium alginate-graft-poly(N-vinyl-2-pyrrolidone; NaAlg-g-PVP) matrix. The matrix that crosslinked with calcium clorid was used for immobilization of S. bayanus. Bioethanol productivity of the NaAlg-g-PVP matrix was found to increase from 4.21 to 4.84 gL−1 h−1 when compared with the convential sodium alginate matrix. The production of bioethanol was affected by initial glucose concentration and percentage of immobilized cell beads in fermentation medium. Bioethanol productivity was increased from 3.62 to 4.84 gL−1 h−1 while the glucose concentration increasing from 50 to 100 gL−1. Due to the increase in percentage from 10 to 20 % of immobilized cell beads in the fermentation medium, bioethanol productivity was increased from 4.84 to 8.68 gL−1 h−1. The cell immobilized NaAlg-g-PVP beads were protected 92 % of initial activity after six repeated fermentation.
机译:在这项研究中,固定化条件和固定化Bayanus酵母的生物乙醇生产特性的海藻酸钠嫁接聚(N-乙烯基-2-吡咯烷酮; NaAlg-g-PVP)矩阵。与氯酸钙交联的基质用于固定巴彦链球菌。与常规海藻酸钠基质相比,NaAlg-g-PVP基质的生物乙醇生产率从4.21增加到4.84 gL -1 h -1 。生物乙醇的产生受到初始葡萄糖浓度和发酵培养基中固定化细胞珠粒百分比的影响。生物乙醇生产率从3.62增加到4.84 gL -1 h -1 ,而葡萄糖浓度从50 gL -1 增加。由于发酵培养基中固定化的细胞珠的百分比从10%增加到20%,生物乙醇生产率从4.84 gL -1 h -1 增加到8.68 gL -1 h -1 。六次重复发酵后,固定有细胞的NaAlg-g-PVP珠的初始活性为92%。

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