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Effect of in situ acids removal on mixed glucose and xylose fermentation by Clostridium tyrobutyricum

机译:原位酸去除对酪丁酸梭菌混合葡萄糖和木糖发酵的影响

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摘要

In the present study, the effect of potassium ions and increasing concentrations of glucose and xylose on the growth of a strain of Clostridium tyrobutyricum, adapted to wheat straw hydrolysate, was investigated. Application of continuous fermentation of a mixture of glucose and xylose and in situ acid removal by reverse electro enhanced dialysis (REED) was investigated as a method to alleviate potassium and end-product inhibition and consequently enhance the sugar consumption rates and butyric acid productivity. It was found that glucose and xylose were not inhibitory up to a concentration of 50 and 37 g L−1 respectively, and that they were consumed at comparable rates when fermented alone. However, continuous fermentation of a mixture of glucose and xylose resulted in a significantly decreased xylose consumption rate compared to that of glucose alone, supporting the conclusion that C. tyrobutyricum has a lower affinity for xylose than for glucose. Potassium ions negatively affected the effective maximum growth rate of C. tyrobutyricum at concentrations higher than 5 g L−1 exhibiting a non-competitive type of inhibition. Continuous fermentation of a glucose and xylose mixture with simultaneous acid removal by REED resulted in a two to threefold increase of the glucose consumption rate, while the xylose consumption rate was enhanced sixfold compared to continuous fermentation without in situ acid removal. Similarly, butyric acid productivity was enhanced by a factor of 2–3, while the yield remained unaffected.
机译:在本研究中,研究了钾离子和葡萄糖和木糖浓度的增加对适合小麦秸秆水解产物的酪丁酸梭菌菌株生长的影响。葡萄糖和木糖混合物的连续发酵应用和通过反向电渗析(REED)去除原位酸的方法已得到研究,以减轻钾和终产物的抑制作用,从而提高糖的消耗率和丁酸的生产率。发现葡萄糖和木糖分别在50和37 g L -1 的浓度下均没有抑制作用,单独发酵时它们的消耗量相当。然而,与单独的葡萄糖相比,葡萄糖和木糖的混合物的连续发酵导致木糖的消耗速率显着降低,这支持酪丁酸梭菌对木糖的亲和力低于对葡萄糖的亲和力的结论。钾离子对浓度高于5 g L -1 的酪丁酸梭菌的有效最大生长速率产生负面影响,表现出非竞争性抑制作用。连续发酵葡萄糖和木糖混合物,同时通过REED去除酸,使葡萄糖消耗速率提高了2到3倍,而与没有原位去除酸的连续发酵相比,木糖消耗速率提高了6倍。同样,丁酸的生产率提高了2-3倍,而产量却未受影响。

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