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Production of Xylitol from D-Xylose by Debaryomyces hansenii

机译:汉森脱酵母从D-木糖生产木糖醇

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Xylitol, a naturally occurring five-carbon sugar alcohol, can be produced from D-xylose through microbial hydrogenation. Xylitol has found increasing use in the food industries, especially in confectionary. It is the only so-called "second-generation polyol sweeteners" that is allowed to have the specific health claims in some world markets. In this study, the effect of cell density on the xylitol production by the yeast Debaryomyces hansenii NRRL Y-7426 from D-xylose under microaerobic conditions was examined. The rate of xylitol production increased with increasing yeast cell density to 3 g/L. Beyond this amount there was no increase in the xylitol production with increasing cell density. The optimal pH range for xylitol production was between 4.5 and 5.5. The optimal temperature was between 28 and 37°C, and the optimal shaking speed was 300 rpm. The rate of xylitol production increased linearly with increasing initial xylose concentration. A high concentration of xylose (279 g/L) was converted rapidly and efficiently to produce xylitol with a product concentration of 221 g/L was reached after 48 h of incubation under optimum conditions.
机译:木糖醇是一种天然存在的五碳糖醇,可以通过微生物加氢从D-木糖生产。木糖醇已发现在食品工业中的使用日益增加,特别是在糖食中。它是唯一被允许在某些世界市场上具有特定健康要求的所谓的“第二代多元醇甜味剂”。在这项研究中,研究了细胞密度对微需氧条件下D-木糖酵母汉逊酵母Debaryomyces hansenii NRRL Y-7426产生木糖醇的影响。木糖醇的产生速率随着酵母细胞密度增加至3 g / L而增加。超过该量,木糖醇产量不会随着细胞密度的增加而增加。木糖醇生产的最佳pH范围为4.5至5.5。最佳温度为28至37°C,最佳摇动速度为300 rpm。木糖醇的产生速率随着初始木糖浓度的增加线性增加。在最佳条件下孵育48小时后,高浓度的木糖(279 g / L)迅速有效地转化为木糖醇,产物浓度达到221 g / L。

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