...
首页> 外文期刊>Separation and Purification Technology >Enhancing aqueous systems fermentability using hydrophobic eutectic solvents as extractans of inhibitory compounds
【24h】

Enhancing aqueous systems fermentability using hydrophobic eutectic solvents as extractans of inhibitory compounds

机译:使用疏水性共晶溶剂作为抑制化合物的提取物增强水性系统发酵性

获取原文
获取原文并翻译 | 示例

摘要

Biomass can be transformed into energy, high value chemicals or bioethanol. Nevertheless, the production of the latter is limited by the presence of inhibitory compounds that hinder the sugar fermentation process. This paper proposes menthol-based Hydrophobic Eutectic Solvents (HESs) as green solvents in the liquid extraction of phenolic compounds from diluted aqueous solutions. In particular, the main goal of the work is to analyse the capacity of the HESs to extract phenolic compounds (phenol, guaiacol and syringol) and glucose (as model sugar), since both types of compounds are present in the aqueous phase generated after washing with water the oil obtained in the fast pyrolysis of the biomass. As this is a preliminary study, two model mixtures constituted by solute (phenolic compound or glucose) and deionized water were used. Once HESs were prepared using menthol and three organic acids (octanoic acid, decanoic acid and dodecanoic acid), liquid-liquid extractions were performed in order to WA the ability of these solvents to extract the abovementioned compounds from water. Firstly, stirring and centrifuging times were optimized and the effect of varying the solvent/feed ratio and the initial concentration of the solution {phenolic compound + water} were studied. Afterwards, since the goal of this work is to remove phenols from water to enhance sugars fermentability, the liquid extraction of glucose from water using the same HESs were also experimentally carried out at the optimized conditions. The obtained results are very promising, as HESs can easily extract phenols but not glucose, which would improve the subsequent sugar fermentation process.
机译:生物质可以转化为能量,高价值化学品或生物乙醇。然而,后者的生产受到阻碍糖发酵过程的抑制化合物的限制。本文提出了薄荷醇的疏水性共晶溶剂(HESS)作为稀释水溶液酚类化合物的液体萃取中的绿色溶剂。特别是,该工作的主要目的是分析HESS提取酚类化合物(苯酚,胍和注射器)和葡萄糖(作为模型糖)的能力,因为两种类型的化合物存在于洗涤后产生的水相中用水在生物质的快速热解中获得的油。因为这是一个初步研究,所用溶质(酚类化合物或葡萄糖)和去离子水构成的两种模型混合物。一旦使用薄荷醇和三种有机酸(辛酸,癸酸,癸酸,十二烷酸)制备胃,液 - 液萃取以使这些溶剂从水中提取上述溶剂的能力。首先,优化了搅拌和离心时间,并研究了改变溶剂/进料比的效果和溶液的初始浓度(酚醛化合物+水}。之后,由于本作作品的目的是从水中除去酚以增强糖的发酵性,因此在优化条件下还在实验上进行使用相同HESS的水的葡萄糖的液体提取。获得的结果非常有前途,因为Hess可以容易地提取酚而不是葡萄糖,这将改善随后的糖发酵过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号