任海伟, 张 飞, 张 轶, 陈晓前, 石进才, 王永刚, 李志忠. 白酒糟水解液摇瓶发酵生产木糖醇的工艺优化[J]. 农业工程学报, 2012, 28(10): 287-292.
    引用本文: 任海伟, 张 飞, 张 轶, 陈晓前, 石进才, 王永刚, 李志忠. 白酒糟水解液摇瓶发酵生产木糖醇的工艺优化[J]. 农业工程学报, 2012, 28(10): 287-292.
    Ren Haiwei, Zhang Fei, Zhang Yi, Chen Xiaoqian, Shi Jincai, Wang Yonggang, Li Zhizhong. Process optimization for producing xylitol by shaking-flask fermentation from distiller′s grains hydrolysates[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(10): 287-292.
    Citation: Ren Haiwei, Zhang Fei, Zhang Yi, Chen Xiaoqian, Shi Jincai, Wang Yonggang, Li Zhizhong. Process optimization for producing xylitol by shaking-flask fermentation from distiller′s grains hydrolysates[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(10): 287-292.

    白酒糟水解液摇瓶发酵生产木糖醇的工艺优化

    Process optimization for producing xylitol by shaking-flask fermentation from distiller′s grains hydrolysates

    • 摘要: 为充分利用白酒糟资源,探讨酸水解液作为碳源发酵生产木糖醇的可行性。采用热带假丝酵母(Candida tropicalis1779)发酵酒糟水解液生产木糖醇,分别利用单因素试验和正交试验考察了影响发酵的工艺条件。发酵在250?mL摇瓶发酵瓶中进行。结果表明,当种子龄27?h、接种量20?mL、装液量100?mL、氮源添加量20?mL、氮源浓度48?g/L时发酵效果最好。该条件下发酵液中木糖醇浓度为11.85?mg/mL,木糖利用率和还原糖利用率分别为45.62%和74.81%,残留木糖浓度为463.51?μg/mL。发酵试验表明酒糟水解液作为碳源发酵生产木糖醇具有可行性。

       

      Abstract: Xylitol was produced from hydrolysates of distiller′s grains by Candida tropicalis 1779, and the optimum conditions of the process were found by single-factor experiment and orthogonal test. The fermentations were conducted in 250 mL flasks. The results showed that the satisfied fermentation effect was attained under the technical conditions of inoculum age 27 h, inoculating volume 20mL, liquid volume in flask 100 mL, the addition of nitrogen source 20 mL and nitrogen concentration 48 g/L. Under these conditions, the concentration of xylitol and residual xylose were 11.85mg/mL and 463.51 μg/mL in the fermentation broth, respectively. Under the optimum conditions, the utilization rate of xylose and reducing sugar are 45.62% and 74.81%, respectively. Fermentation experiments showed that it was feasible to produce xylitol by fermentation using lees hydrolysates as a carbon source .

       

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