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Pretreatment of sugarcane bagasse hemicellulose hydrolysate for xylitol production by Candida guilliermondii

机译:甘地假丝酵母对甘蔗渣半纤维素水解物生产木糖醇的预处理

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In order to remove or reduce the concentrations of toxic substances present in the sugarcane bagasse hemicellulose hydrolysate for xylose-to-xylitol bioconversion, the hydrolysate was pretreated by changing the initial pH level through the combination of different bases and acids with or without the subsequent addition of activated charcoal. Attention was given to the influence of the fermentation time as well. The experiments were based on multivariate statistical concepts, with the application of fractional factorial design techniques to identify the important variables in the process. Subsequently, the levels of these variables were quantified by the response surface methodology, which permitted the establishment of the best pretreatment procedure with a xylose-to-xylitol bioconversion efficiency of 86.2%. This procedure consisted in increasing the pH of the hydrolysate from 0.5 to 7.0 with CaO and reducing it to 5.5 with H3PO4. Next, the hydrolysate was treated with activated charcoal (2.4%). The highest xylitol yield (0.79 g/g) corresponded to a productivity of 0.47 g/L/h. [References: 20]
机译:为了去除或降低甘蔗渣半纤维素水解产物中木糖到木糖醇生物转化中存在的有毒物质的浓度,通过改变不同的碱和酸的初始pH值来对水解产物进行预处理,添加或不添加随后的添加活性炭。还要注意发酵时间的影响。实验基于多变量统计概念,并应用分数阶乘设计技术来确定过程中的重要变量。随后,通过响应面方法对这些变量的水平进行了定量,从而建立了最佳的预处理程序,木糖到木糖醇的生物转化效率为86.2%。该步骤包括用CaO将水解产物的pH从0.5增加到7.0,并用H3PO4将其降低到5.5。接下来,将水解产物用活性炭(2.4%)处理。木糖醇的最高产量(0.79 g / g)对应于0.47 g / L / h的生产率。 [参考:20]

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