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Production of xylitol and ethanol by Hansenula polymorpha from hydrolysates of sunflower stalks with phosphoric acid.

机译:多形汉逊酵母由向日葵茎与磷酸的水解产物生产木糖醇和乙醇。

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摘要

This research analyses the effect exerted by the phosphoric acid concentration ( CAo ) in sunflower-stalk hydrolysis at 95degreesC, considering the results in relation to the yields in d-glucose and total reducing sugars (TRS). Besides to display the behavior of the yeast in generating bioalcohols from hydrolysates rich in nutrients such as phosphate, essential for the growth of yeasts in fermentation processes. The results show that the hydrolysis of the hemicellulose fraction was almost complete at CAo =2.67 mol/L (25.3%), at which conversion reached 82.7%. The percentage of converted cellulose also increased with the acid concentration, reaching a value of 13.9% in the hydrolysis process of 2.67 mol/L. The hydrolysis rate ( rH ) was calculated from the values of the concentration of total reducing sugars generated over the process. For a value of CAo =1.67 mol/L, it was determined that ( rH ) max=3.5 g TRS/(L h) at the beginning of the hydrolysis process. After being detoxified, the hydrolysates were fermented with Hansenula polymorpha, ATCC 34438, registering better results in the production of ethanol that of xylitol. For an initial concentration of total reducing sugars of 13.3 g/L, xylitol yield was 0.023 g/g, and ethanol yield was 0.14 g/g.
机译:这项研究分析了磷酸浓度(CAo)在95摄氏度下向日葵茎秆水解中所产生的影响,并考虑了与d-葡萄糖和总还原糖(TRS)产量相关的结果。除了展示酵母从富含营养素(例如磷酸盐)的水解物中产生生物醇的行为外,这对于酵母在发酵过程中的生长至关重要。结果表明,在CAo = 2.67 mol / L(25.3%)时,半纤维素馏分的水解几乎完成,转化率达到82.7%。转化纤维素的百分比也随酸浓度的增加而增加,在2.67 mol / L的水解过程中达到13.9%。由整个过程中产生的总还原糖的浓度值计算水解速率(rH)。对于CAo = 1.67mol / L的值,确定在水解过程开始时(rH)max = 3.5g TRS /(Lh)。解毒后,将水解产物用多形汉逊酵母ATCC 34438进行发酵,与木糖醇相比,乙醇生产的结果更好。对于总还原糖的初始浓度为13.3g / L,木糖醇产率为0.023g / g,乙醇产率为0.14g / g。

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