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Detoxification of Corncob Acid Hydrolysate with SAA Pretreatment and Xylitol Production by Immobilized Candida tropicalis

机译:SAA预处理对玉米芯酸水解产物的解毒作用并固定化热带假丝酵母生产木糖醇

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摘要

Xylitol fermentation production from corncob acid hydrolysate has become an attractive and promising process. However, corncob acid hydrolysate cannot be directly used as fermentation substrate owing to various inhibitors. In this work, soaking in aqueous ammonia (SAA) pretreatment was employed to reduce the inhibitors in acid hydrolysate. After detoxification, the corncob acid hydrolysate was fermented by immobilized Candida tropicalis cell to produce xylitol. Results revealed that SAA pretreatment showed high delignification and efficient removal of acetyl group compounds without effect on cellulose and xylan content. Acetic acid was completely removed, and the content of phenolic compounds was reduced by 80%. Furthermore, kinetic behaviors of xylitol production by immobilized C. tropicalis cell were elucidated from corncob acid hydrolysate detoxified with SAA pretreatment and two-step adsorption method, respectively. The immobilized C. tropicalis cell showed higher productivity efficiency using the corncob acid hydrolysate as fermentation substrate after detoxification with SAA pretreatment than by two-step adsorption method in the five successive batch fermentation rounds. After the fifth round fermentation, about 60 g xylitol/L fermentation substrate was obtained for SAA pretreatment detoxification, while about 30 g xylitol/L fermentation substrate was obtained for two-step adsorption detoxification.
机译:由玉米芯酸水解产物生产木糖醇的发酵已成为有吸引力且有希望的过程。然而,由于各种抑制剂,玉米芯酸水解产物不能直接用作发酵底物。在这项工作中,浸泡在氨水(SAA)预处理中可减少酸性水解产物中的抑制剂。解毒后,将玉米芯酸水解物通过固定化的热带假丝酵母细胞发酵以产生木糖醇。结果表明,SAA预处理显示出较高的脱木素度并能有效去除乙酰基化合物,而对纤维素和木聚糖含量没有影响。乙酸被完全除去,酚类化合物的含量减少了80%。此外,分别通过SAA预处理和两步吸附法对玉米芯酸水解产物进行解毒,阐明了固定化热带假丝酵母细胞生产木糖醇的动力学行为。在五个连续的分批发酵过程中,采用玉米芯酸水解产物作为SAA预处理解毒后的发酵底物,固定化的热带假丝酵母细胞显示出更高的生产率效率。第五轮发酵后,获得约60μg木糖醇/ L发酵底物用于SAA预处理解毒,而获得约30μg木糖醇/ L发酵底物用于两步吸附解毒。

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  • 作者

    Li-Hong Deng; Yong Tang; Yun Liu;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 214632
  • 总页数 11
  • 原文格式 PDF
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