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eaction extraction of furfural from pentose solutions in a modified Scheibel column

机译:从改性的Scheibel柱中戊酮溶液的糠醛萃取

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摘要

Furfural, which is one of the most promising platform chemicals derived from biomass, has the potential for the production of biofuels and biochemicals. However, the current industrial furfural production process relies on relatively old and inefficient technology, which has some problems such as low production yields, environmental pollutions, and lack of biomass comprehensive utilization. The main contribution of this paper is the use of a modified Scheibel column to improve the furfural recovery. Integration of pen- tose dehydration to furfural and the solvent phase extraction of furfural occurred simultaneously in this column. Compared with the prevailing batch biphasic reactor, the use of this modified column intensified the extraction efficiency as well as the furfural recovery. Process parameters including organic feed flow rate, reaction temperature, and stirring speed were evaluated and turned out to be significant. In order to achieve the optimal operating conditions, the CCD design was used to optimize the process parameters, and the maximum furfural yield of 80.5% was obtained.
机译:糠醛是来自生物量最有前途的平台化学品之一,具有生产生物燃料和生物化学的潜力。然而,目前的工业糠醛生产过程依赖于相对较低的且低效的技术,这具有一些问题,例如低产量,环境污染和缺乏生物量综合利用。本文的主要贡献是使用改良的Scheibel柱来改善糠醛恢复。在该柱中,糠醛脱水与糠醛的整合和糠醛的溶剂相提取。与普遍批量双相反应器相比,使用该改性柱加强了提取效率以及糠醛回收。评估包括有机进料流速,反应温度和搅拌速度的过程参数,并异常是显着的。为了实现最佳操作条件,使用CCD设计来优化工艺参数,并且获得了80.5%的最大糠醛产率。

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