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Separate and Simultaneous Enzymatic Hydrolysis and Fermentation of Wheat Hemicellulose With Recombinant Xylose Utilizing Saccharomyces cerevisiae

机译:用重组木瓜利用酿酒酵母分离和同时酶活性水解和麦小纤维素发酵

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Fermentations with three different xylose-utilizing recombinant Saccharomyces cerevisiae strains (F12, CR4, and CB4) were performed using two different wheat hemicellulose substrates, unfermented starch free fibers, and an industrial ethanol fermentation residue, vinasse. With CR4 and F12, the maximum ethanol concentrations obtained were 4.3 and 4 g/L, respectively, but F12 converted xylose 15% faster than CR4 during the first 24 h. The comparison of separate hydrolysis and fermentation (SHF) and simultaneous saccharification and fermentation (SSF) with F12 showed that the highest, maximum ethanol concentrations were obtained with SSF. In general, the volumetric ethanol productivity was initially, highest in the SHF, but the overall volumetric ethanol productivity ended up being maximal in the SSF, at 0.013 and 0.010 g/Lh, with starch free fibers and vinasse, respectively.
机译:使用两种不同的小麦半纤维素基材,未发酵的淀粉游离纤维,以及工业乙醇发酵残渣,Vinasse,使用两种不同的小麦半纤维素基材进行酿酒酵母(F12,CR4和CB4)进行三种不同木糖糖类酿酒酵母(F12,CR4和CB4)。使用CR4和F12,得到的最大乙醇浓度分别为4.3和4g / L,但F12在前24小时期间将木糖转化为15%的速度比CR4更快。用F12的单独水解和发酵(SHF)和同时糖化和发酵(SSF)的比较表明,使用SSF获得最高,最大的乙醇浓度。通常,体积乙醇生产率最初,在SHF中最高,但总体积乙醇生产率最终在SSF中最大化,0.013和0.010g / LH,分别与淀粉游离纤维和vinasse。

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