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Biotechnological production of xylitol in a three-phase fluidized bed bioreactor with immobilized yeast cells in Ca-alginate beads

机译:木藻醇在三相流化床生物反应器中的生物技术生产,固定化酵母细胞在藻酸钙珠中

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摘要

Cells of Candida guilliermondii entrapped in Ca-alginate beads were used for xylitol production, from concentrated hemicellulose hydrolyzate of sugarcane bagasse, in a fluidized bed bioreactor (FBR). The maximum xylitol concentration 28.9 g xylitol/L was obtained at a high aeration rate of 600 mL/min after 70 h of fermentation, indicating that the use of high aeration rate in this system is favored for better oxygen transfer into the immobilized cells. The specific xylitol productivity and the xylitol yield were of 0.4 g xylitol/L.h and 0.58 g xylitol/g xylose respectively. The immobilization efficiency at the end of the fermentation was of 65 %. After 90 h of fermentation xylitol productivity and yield decreased to 0.25 g xylitol/L.h and 0.47 g xylitol/g xylose respectively, indicating the beginning of xylitol consumption by the yeast. The use of FBR system with immobilized cells presented high xylitol yield and productivity.
机译:在流化床生物反应器(FBR)中,将甘蔗渣中浓缩的半纤维素水解产物中包裹在Ca-藻酸盐微珠中的古念珠菌细胞用于木糖醇生产。发酵70小时后,以600 mL / min的高通气速率获得最高木糖醇浓度28.9 g木糖醇/ L,这表明在该系统中使用高通气速率有利于将氧气更好地转移到固定化细胞中。木糖醇的比生产率和木糖醇产率分别为0.4g木糖醇/L.h和0.58g木糖醇/ g木糖。发酵结束时的固定效率为65%。发酵90小时后,木糖醇的生产率和产量分别降至0.25 g木糖醇/L.h和0.47 g木糖醇/ g木糖,表明酵母开始消耗木糖醇。将FBR系统与固定化细胞一起使用可提供较高的木糖醇收率和生产率。

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