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用于木糖醇生产的栗壳水解物的活性炭解毒及浓缩的优化。

Optimization of activated charcoal detoxification and concentration of chestnut shell hydrolysate for xylitol production.

作者信息

Eryasar-Orer Kubra, Karasu-Yalcin Seda

机构信息

Department of Food Engineering, Faculty of Engineering, Bolu Abant Izzet Baysal University, Golkoy, Bolu, Turkey.

出版信息

Biotechnol Lett. 2021 Jun;43(6):1195-1209. doi: 10.1007/s10529-021-03087-0. Epub 2021 Mar 2.

Abstract

OBJECTIVES

To increase xylose concentration of the chestnut shell hemicellulosic hydrolysate with an acceptable phenolic compound level in order to enhance xylitol production by Candida tropicalis M43.

RESULTS

The xylose concentration and total phenolic compound concentration of the hydrolysate were obtained as 33.68 g/L and 77.38 mg gallic acid equivalent/L, respectively by optimization of detoxification parameters and concentration level (60 °C, 115 min contact time, 5.942% (w/v) dosage of activated charcoal, 120 strokes/min shaking rate and 0.2 volume ratio). Xylitol production was achieved in the hydrolysate by using Candida tropicalis M43. The maximum xylitol concentration was 6.30 g/L and productivity, yield and percentage of substrate conversion were calculated as 0.11 g/L h, 19.13% and 97.79%, respectively. In addition, the chestnut shell hydrolysate fortified with xylose and the maximum xylitol concentration increased to 18.08 g/L in the hydrolysate-based medium containing 80 g/L xylose.

CONCLUSIONS

Optimizing detoxification conditions with concentration level was found to be useful for enhancing xylitol production. In addition, fortification of the hydrolysate caused a three fold increase in maximum xylitol concentration.

摘要

目的

提高栗壳半纤维素水解产物中的木糖浓度,同时使酚类化合物水平保持在可接受范围内,以提高热带假丝酵母M43生产木糖醇的能力。

结果

通过优化解毒参数和浓缩水平(60℃、115分钟接触时间、5.942%(w/v)活性炭用量、120次/分钟振荡速率和0.2体积比),水解产物中的木糖浓度和总酚类化合物浓度分别达到33.68 g/L和77.38 mg没食子酸当量/L。使用热带假丝酵母M43在水解产物中实现了木糖醇的生产。最大木糖醇浓度为6.30 g/L,生产率、产率和底物转化率分别计算为0.11 g/L·h、19.13%和97.79%。此外,在含有80 g/L木糖的基于水解产物的培养基中,添加木糖的栗壳水解产物中最大木糖醇浓度增加到18.08 g/L。

结论

发现通过浓缩水平优化解毒条件有助于提高木糖醇产量。此外,水解产物的强化使最大木糖醇浓度提高了三倍。

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