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Model-based optimization of xylooligosaccharides production by hydrothermal pretreatment of Eucalyptus by-product

机译:基于模型的木瓜糖果生产优化,桉树副产品水热预处理

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摘要

Eucalyptus wood is the main source of fiber for the production of paper and cellulose in South America. One of the by-products of the pulp industry is sawdust generated during wood chip production; sawdust from Eucalyptus is denominated as Eucalyptus by-product (EB). Xylooligosaccharides (XOS) are oligomers mainly comprising xylose units, which have beneficial effects on health. In this study, was report the optimization of XOS production through the hydrothermal pretreatment (HP) of EB. A central composite experimental design comprising a 2(3)-factorial design with six axial points and four replicates at the central point was employed to optimize the HP conditions for maximum XOS production using response surface method; these conditions were as follows: temperature of 161 degrees C, reaction time of 65 min, and consistency of 10 %. The hemicellulosic hydrolysate showed potential for the production of XOS, containing 60 milligrams of XOS per gram of EB.
机译:桉木是南美洲生产纸和纤维素的主要光纤来源。 纸浆行业的一个副产品是木屑生产中产生的锯末; 来自桉树的锯末以桉树副产品(EB)计为单位。 木龙核糖(XOS)是主要包含木糖单元的低聚物,对健康有益效果。 在这项研究中,通过EB的水热预处理(HP)报告了XOS生产的优化。 使用具有六个轴向点和四个轴向点的2(3)个轴表和四重复的中央复合实验设计,以优化使用响应表面法的最大XOS生产的HP条件; 这些条件如下:温度为161℃,反应时间为65分钟,稠度为10%。 半纤维素水解产物显示出XOS的潜力,含有每克EB的60毫克XOS。

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