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pH值和氯化钠对二元溶液中甘氨酸和三甘氨酸截留率的影响——用于双极纳滤脱盐

Influence of pH and NaCl on the rejection of glycine and triglycine in binary solutions for desalination with diananofiltration.

作者信息

Labanda Jordi, Shahgodari Shirin, Llorens Joan

机构信息

Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí I Franquès 1, 08028, Barcelona, Spain.

出版信息

Heliyon. 2023 May 29;9(6):e16797. doi: 10.1016/j.heliyon.2023.e16797. eCollection 2023 Jun.

Abstract

Nanofiltration can be used as the last step in the purification of the biomolecules that are present in many industrial by-products, such as biological protein hydrolysates. The present study explored the variation in glycine and triglycine rejections in binary solutions with NaCl at different feed pHs with two nanofiltration membranes: MPF-36 and Desal 5DK with molecular weight cut-offs of 1000 and 200 g mol, respectively. First, water permeability coefficient showed a n-shaped curve with feed pH, which was more evident for the MPF-36 membrane. Second, membrane performance with single solutions was studied and the experimental data were fitted with the Donnan steric pore model with dielectric exclusion (DSPM-DE) to explain the variations of solute rejection with feed pHs. Glucose rejection was assessed to estimate the membrane pore radius of the MPF-36 membrane, and a pH dependence was observed. For a tight membrane (Desal 5DK), glucose rejection was close to unity and the membrane pore radius was estimated from the glycine rejection in the feed pH range from 3.7 to 8.4. Glycine and triglycine rejections showed a pH-dependence with a u-shaped curve, even for the zwitterion species. In binary solutions, glycine and triglycine rejections decreased with NaCl concentration, especially in the MPF-36 membrane. Triglycine rejection was always higher than NaCl rejection and it was estimated that triglycine can be desalted using a continuous diananofiltration the Desal 5DK membrane.

摘要

纳滤可作为许多工业副产品中存在的生物分子纯化的最后一步,例如生物蛋白质水解产物。本研究探讨了在不同进料pH值下,使用两种纳滤膜(MPF-36和Desal 5DK,截留分子量分别为1000和200 g/mol)时,二元溶液中甘氨酸和三甘氨酸截留率随NaCl的变化情况。首先,水渗透系数随进料pH值呈n形曲线,这在MPF-36膜上更为明显。其次,研究了单一溶液的膜性能,并将实验数据与考虑介电排斥的唐南-空间位阻孔模型(DSPM-DE)进行拟合,以解释溶质截留率随进料pH值的变化。通过评估葡萄糖截留率来估算MPF-36膜的膜孔半径,并观察到其与pH有关。对于致密膜(Desal 5DK),葡萄糖截留率接近1,且在进料pH值为3.7至8.4的范围内,根据甘氨酸截留率估算膜孔半径。甘氨酸和三甘氨酸截留率呈现出pH依赖性,呈u形曲线,即使对于两性离子物种也是如此。在二元溶液中,甘氨酸和三甘氨酸截留率随NaCl浓度降低,尤其是在MPF-36膜中。三甘氨酸截留率始终高于NaCl截留率,据估计,使用Desal 5DK膜通过连续双纳滤可对三甘氨酸进行脱盐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e66a/10258429/01c75679d025/gr1.jpg

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