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通过纳滤从稀酸玉米芯水解液中回收单糖:建模与优化

Recovery of monosaccharides from dilute acid corncob hydrolysate by nanofiltration: modeling and optimization.

作者信息

Jiang Kangkang, Kuang Han, Qin Taotao, Song Mingkai, Zhou Jingwei, Yang Pengpeng, Zhuang Wei, Ying Hanjie, Wu Jinglan

机构信息

College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University Xin Mofan Road 5 Nanjing 210009 China

National Engineering Technique Research Center for Biotechnology Nanjing China.

出版信息

RSC Adv. 2018 Apr 3;8(23):12672-12683. doi: 10.1039/c8ra00236c.

Abstract

In this work nanofiltration technology has been employed for removal of inhibitors and recovery of monosaccharides from dilute acid lignocellulose hydrolysates. The influences of feed solution pH, permeate flux, and NaSO concentration on the rejection of monosaccharides and inhibitors were investigated. The results showed that the pH for the separation of carboxylic acids and furans from monosaccharides should be as low as possible. With increase of NaSO concentration carboxylic acid and furan rejection decreased. Subsequently, the Donnan steric pore and dielectric exclusion model coupled with mass balance was used to predict the rejection of solutes at different permeate fluxes. In order to select a suitable permeate flux and operating time, multi-objective optimization was carried out to obtain the maximum total inhibitor removal efficiency, the maximum monosaccharide recovery rate, and the minimum water consumption. The optimal operating conditions were then verified using the real hydrolysate as feed solutions. More specifically, for the treatment of 6 L of a hydrolysate solution, 13 L of water and a treatment time of 35 min were required. This process allowed the removal of 90% inhibitors, while 93.55% glucose, 90.75% xylose, and 90.53% arabinose were recovered. Finally, a batch column equipped with a strong acid cation exchange resin was employed to recover the monosaccharides from the hydrolysate. Using water as an eluent, 95.37% of the sulfuric acid and 94.87% of the monosaccharides were recovered. In all, we demonstrated that the combination of nanofiltration with electrolyte exclusion chromatography is a promising integrated process for the recovery of monosaccharides and inorganic acids from dilute acid corncob hydrolysates.

摘要

在这项工作中,纳滤技术已被用于从稀酸木质纤维素水解液中去除抑制剂并回收单糖。研究了进料溶液pH值、渗透通量和Na₂SO₄浓度对单糖和抑制剂截留率的影响。结果表明,从单糖中分离羧酸和呋喃的pH值应尽可能低。随着Na₂SO₄浓度的增加,羧酸和呋喃的截留率降低。随后,将唐南空间位阻孔和介电排斥模型与质量平衡相结合,用于预测不同渗透通量下溶质的截留率。为了选择合适的渗透通量和操作时间,进行了多目标优化,以获得最大的总抑制剂去除效率、最大的单糖回收率和最小的水消耗。然后使用实际水解液作为进料溶液验证了最佳操作条件。更具体地说,对于处理6 L的水解液溶液,需要13 L的水和35分钟的处理时间。该过程能够去除90%的抑制剂,同时回收93.55%的葡萄糖、90.75%的木糖和90.53%的阿拉伯糖。最后,使用配备强酸阳离子交换树脂的间歇柱从水解液中回收单糖。以水作为洗脱剂,回收了95.37%的硫酸和94.87%的单糖。总之,我们证明了纳滤与电解质排斥色谱相结合是一种从稀酸玉米芯水解液中回收单糖和无机酸的有前景的集成工艺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a17e/9079360/2b361b5ea294/c8ra00236c-f1.jpg

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