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FT30反渗透膜活性层中官能团的定量及其电离行为建模。

Quantification of functional groups and modeling of their ionization behavior in the active layer of FT30 reverse osmosis membrane.

作者信息

Coronell Orlando, Mariñas Benito J, Zhang Xijing, Cahill David G

机构信息

Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

Environ Sci Technol. 2008 Jul 15;42(14):5260-6. doi: 10.1021/es8002712.

Abstract

A new experimental approach was developed to measure the concentration of charged functional groups (FGs) in the active layer of thin-film composite reverse osmosis (RO) and nanofiltration (NF) membranes as a function of solution pH. FT30 RO membrane, with a fully aromatic polyamide (PA) active layer sandwiched between a polysulfone support and a coating layer, was used. The experiments consisted of saturating charged FGs with heavy ion probes, and determining the ion probe concentration by Rutherford backscattering spectrometry (RBS). Deprotonated carboxylic groups were saturated with Ag+, and protonated amine groups with W04(2-). The ionization behavior of carboxylic and amine groups was modeled based on acid-base equilibrium theory. While the ionization behavior of amine groups was satisfactorily described by one dissociation constant (pKa = 4.74), two pKa values (5.23 and 8.97) were necessary to describe the titration curve of carboxylic groups. These results were consistent with the bimodal pore size distribution (PSD) of FT30 active layer reported in the literature. The calculated total concentrations of carboxylic and amine groups in the active layer of the FT30 RO membrane studied were 0.432 and 0.036 M, respectively, and the isoelectric point (IEP) was 4.7. The total concentration of carboxylic and amine groups revealed that the degree of cross-linking of the PA active layer of the FT30 RO membrane studied was 94%.

摘要

开发了一种新的实验方法,用于测量薄膜复合反渗透(RO)和纳滤(NF)膜活性层中带电官能团(FGs)的浓度与溶液pH值的函数关系。使用了FT30 RO膜,其完全芳香族聚酰胺(PA)活性层夹在聚砜支撑层和涂层之间。实验包括用重离子探针使带电FGs饱和,并通过卢瑟福背散射光谱法(RBS)测定离子探针浓度。用Ag +使去质子化的羧基饱和,用W04(2-)使质子化的胺基饱和。基于酸碱平衡理论对羧基和胺基的电离行为进行了建模。虽然胺基的电离行为用一个解离常数(pKa = 4.74)就能令人满意地描述,但需要两个pKa值(5.23和8.97)来描述羧基的滴定曲线。这些结果与文献中报道的FT30活性层的双峰孔径分布(PSD)一致。所研究的FT30 RO膜活性层中羧基和胺基的计算总浓度分别为0.432和0.036 M,等电点(IEP)为4.7。羧基和胺基的总浓度表明,所研究的FT30 RO膜PA活性层的交联度为94%。

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