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蔗渣髓水解液的解毒方法对粘红酵母木糖醇生产的影响。

Detoxification Approaches of Bagasse Pith Hydrolysate Affecting Xylitol Production by Rhodotorula mucilaginosa.

机构信息

Dept. of Bio-refinery, Faculty of New Technologies, Zirab Campus, Shahid Beheshti University, Savadkooh, Mazandaran, Iran.

出版信息

Appl Biochem Biotechnol. 2024 Jan;196(1):129-144. doi: 10.1007/s12010-023-04539-1. Epub 2023 Apr 27.

Abstract

In this study, the potential of bagasse pith (the waste of sugar and paper industry) was investigated for bio-xylitol production for the first time. Xylose-rich hydrolysate was prepared using 8% dilute sulfuric acid, at 120 °C for 90 min. Then, the acid-hydrolyzed solution was detoxified by individual overliming (OL), active carbon (AC), and their combination (OL+AC). The amounts of reducing sugars and inhibitors (furfural and hydroxyl methyl furfural) were measured after acid pre-treatment and detoxification process. Thereafter, xylitol was produced from detoxified hydrolysate by Rhodotorula mucilaginosa yeast. Results showed that after acid hydrolysis, the sugar yield was 20%. Detoxification by overliming and active carbon methods increased the reducing sugar content up to 65% and 36% and decreased the concentration of inhibitors to >90% and 16%, respectively. Also, combined detoxification caused an increase in the reducing sugar content (>73%) and a complete removal of inhibitors. The highest productivity of xylitol (0.366 g/g) by yeast was attained after the addition of 100 g/l non-detoxified xylose-rich hydrolysate into fermentation broth after 96 h, while the xylitol productivity enhanced to 0.496 g/g after adding the similar amount of xylose-rich hydrolysate detoxified by combined method (OL+AC2.5%).

摘要

在这项研究中,首次考察了甘蔗渣髓(糖和造纸工业的废料)用于生物木糖醇生产的潜力。使用 8%稀硫酸,在 120°C 下反应 90 分钟,制备富含木糖的水解液。然后,通过单独过石灰(OL)、活性炭(AC)及其组合(OL+AC)对酸水解溶液进行解毒。在酸预处理和解毒过程后测量还原糖和抑制剂(糠醛和羟甲基糠醛)的量。然后,通过粘红酵母从解毒水解液中生产木糖醇。结果表明,酸水解后,糖收率为 20%。OL 和活性炭法的解毒作用将还原糖含量提高到 65%和 36%,并将抑制剂浓度分别降低到>90%和 16%。此外,联合解毒可使还原糖含量增加(>73%),并完全去除抑制剂。在 96 小时后,向发酵液中添加 100 g/L 未经解毒的富含木糖的水解液后,酵母的木糖醇最高生产率(0.366 g/g),而添加经联合方法(OL+AC2.5%)解毒的相同量的富含木糖的水解液后,木糖醇生产率提高到 0.496 g/g。

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