醋酸纤维素不对称膜的超滤性能:与红外光谱相关性的新视角

A. S. Figueiredo, A. R. García, M. Minhalma, L. Ilharco, M. D. Pinho
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引用次数: 5

摘要

以含量为22%、30%和34%的甲酰胺为助孔剂,通过相转化法制备了整体不对称乙酸纤维素(CA)膜。通过衰减全反射模式下的红外光谱(ATR-FTIR)对这些膜CA-22、CA-30和CA-34进行分析,以研究多孔膜基质对聚合物/水/溶质相互作用和盐的选择性超滤的影响。膜的水力渗透率范围很广,从3.5到81.0 kg.m-2.h-1.bar-1,分子量截止值从4.17到31.43 kDa。中性溶质随分子量增加的实验表观排阻系数通过膜模型与其固有排阻系数相关。通过迭代算法估计的表面平均孔隙半径在2.1至4.5nm的范围内。较紧的膜CA-22对Na2SO4、CaSO4、MgSO4显示出50%或更高的实验表观截留系数,这与对NaCl、CaCl2和MgCl2盐的14%至18%的较低值形成对比。ATR-FTIR表明,在孔径较大的膜CA-30和CA-34中,水分子以液态类水结构组织,其中大多数分子与其他四个或两个分子氢键结合;然而,一部分水分子与CA羰基紧密结合。对于CA-22膜,有更多的游离羰基和更大比例的游离水,两者都能够与溶质相互作用,如水合硫酸根离子。因此,这种超滤膜具有区分阴离子物种的能力。
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The ultrafiltration performance of cellulose acetate asymmetric membranes: a new perspective on the correlation with the infrared spectra
Integral asymmetric cellulose acetate (CA) membranes were casted by phase-inversion with formamide varying content - 22, 30 and 34% - as pore promoter. These membranes, CA-22, CA-30 and CA-34, were analyzed by infrared spectroscopy in attenuated total reflection mode (ATR-FTIR) to investigate the porous membrane matrix influence on the polymer/water/solute interactions and the selective ultrafiltration of salts. The membranes covered a wide range of hydraulic permeabilities, from 3.5 to 81.0 kg.m-2.h-1.bar-1, and of molecular weight cut-offs, from 4.17 to 31.43 kDa. The experimental apparent rejection coefficients of neutral solutes of increasing molecular weight are related to their intrinsic rejection coefficients through the film model. The surface average pore radius, estimated by an iterative algorithm, ranges from 2.1 to 4.5 nm. The tighter membrane, CA-22, displays experimental apparent rejection coefficients to the Na2SO4, CaSO4, MgSO4 of 50% or higher values and this is in contrast with the lower values, between 14 and 18%, to the NaCl, CaCl2 and MgCl2 salts. The ATR-FTIR evidences that in the membranes with larger pores, CA-30 and CA-34, the water molecules are organized with a liquid-water-like structure, in which most molecules are hydrogen bonded to four or to two others; nevertheless, a fraction of water molecules is strongly bonded to the CA carbonyl groups. For the CA-22 membrane, there are more free carbonyl groups and a larger fraction of free water, both able to interact with solutes, such as the hydrated sulphate ions. Therefore, this ultrafiltration membrane has the capability of differentiating anionic species.
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来源期刊
Journal of Membrane Science and Research
Journal of Membrane Science and Research Materials Science-Materials Science (miscellaneous)
CiteScore
4.00
自引率
0.00%
发文量
1
审稿时长
8 weeks
期刊介绍: The Journal of Membrane Science and Research (JMSR) is an Open Access journal with Free of Charge publication policy, which provides a focal point for academic and industrial chemical and polymer engineers, chemists, materials scientists, and membranologists working on both membranes and membrane processes, particularly for four major sectors, including Energy, Water, Environment and Food. The journal publishes original research and reviews on membranes (organic, inorganic, liquid and etc.) and membrane processes (MF, UF, NF, RO, ED, Dialysis, MD, PV, CDI, FO, GP, VP and etc.), membrane formation/structure/performance, fouling, module/process design, and processes/applications in various areas. Primary emphasis is on structure, function, and performance of essentially non-biological membranes.
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