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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Integrative process for sugarcane bagasse biorefinery to co-produce xylooligosaccharides and gluconic acid
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Integrative process for sugarcane bagasse biorefinery to co-produce xylooligosaccharides and gluconic acid

机译:甘蔗甘蔗渣生物遗料的整合方法共同生产木质糖苷和葡萄糖酸

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摘要

An integrated and green process for co-producing xylooligosaccharides (XOS) and gluconic acid (GA), was developed by utilizing sugarcane bagasse as starting material. In this study, the highest XOS yield of 39.1% obtained from the prehydrolysis was achieved with 10% acetic acid at 150 degrees C for 45 min. Subsequently, 88.6% conversion of cellulose was achieved in a fed-batch enzymatic hydrolysis using a solid loading of 15%. Results of glucose fermentation suggested that inherent regulatory system of strain Gluconobacter oxydans ATCC 621 H boosted GA accumulation without the requirement of pH control, leading to a good 96.3% of GA yield. Great performance of this strain offer an economically feasible option for the large-scale sustainable GA production from biomass. Overall, approximately 105 g XOS and 340 g GA were co-produced from 1 kg of dried sugarcane bagasse as feedstock; this integrated process might be a cost-effective option for the comprehensive utilization of sugarcane bagasse.
机译:通过利用甘蔗囊片作为起始材料,开发了共同生产木质糖糖(XOS)和葡萄糖酸(GA)的集成和绿色方法。在该研究中,从预氢化的最高XOS产率为39.1%,在150℃下以10%乙酸达到45分钟。随后,使用15%的固体载荷,在FED-酶水解中实现了88.6%的纤维素转化。葡萄糖发酵的结果表明,菌株葡萄糖杆菌的固有调节系统ATCC 621 H增加了GA积累而不需要pH控制,导致GA产量的良好96.3%。这种应变的良好表现为来自生物量的大规模可持续的GA生产提供经济上可行的选择。总体而言,大约105克XOS和340克GA由1千克干甘油甘蔗作为原料共同生产;这种综合过程可能是甘蔗甘蔗群综合利用的成本效益。

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