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Molecular Dynamics Simulation Study of Polyamide Membrane Structures and RO/FO Water Permeation Properties

机译:聚酰胺膜结构和RO / FO水渗透特性的分子动力学模拟研究

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摘要

Polyamide (PA) membranes possess properties that allow for selective water permeation and salt rejection, and these are widely used for reverse osmotic (RO) desalination of sea water to produce drinking water. In order to design high-performance RO membranes with high levels of water permeability and salt rejection, an understanding of microscopic PA membrane structures is indispensable, and this includes water transport and ion rejection mechanisms on a molecular scale. In this study, two types of virtual PA membranes with different structures and densities were constructed on a computer, and water molecular transport properties through PA membranes were examined on a molecular level via direct reverse/forward osmosis (RO/FO) filtration molecular dynamics (MD) simulations. A quasi-non-equilibrium MD simulation technique that uses applied (RO mode) or osmotic (FO mode) pressure differences of several MPa was conducted to estimate water permeability through PA membranes. A simple NVT (Number, Volume, and Temperature constant ensemble)-RO MD simulation method was presented and verified. The simulations of RO and FO water permeability for a dense PA membrane model without a support layer agreed with the experimental value in the RO mode. This PA membrane completely rejected Na + and Cl ? ions during a simulation time of several nano-seconds. The naturally dense PA structure showed excellent ion rejection. The effect that the void size of PA structure exerted on water permeability was also examined.
机译:聚酰胺(PA)膜具有允许选择性渗透和除盐的特性,并且被广泛用于海水的反渗透(RO)脱盐以生产饮用水。为了设计具有高水平的透水性和耐盐性的高性能RO膜,对微观PA膜结构的了解是必不可少的,这包括分子尺度上的水传输和离子排斥机理。在这项研究中,在计算机上构建了两种类型的具有不同结构和密度的虚拟PA膜,并通过直接反渗透/正渗透(RO / FO)过滤分子动力学在分子水平上研究了通过PA膜的水分子传输特性( MD)模拟。进行了一种准非平衡MD模拟技术,该技术使用了几个MPa的施加(RO模式)或渗透(FO模式)压差来估计通过PA膜的透水性。提出并验证了一种简单的NVT(数量,体积和温度常数集合)-RO MD仿真方法。对于不带支撑层的致密PA膜模型,RO和FO的水渗透性仿真与RO模式下的实验值一致。该PA膜完全排斥Na +和Cl +。在几纳秒的模拟时间内产生离子。天然致密的PA结构表现出出色的离子排斥性。还检查了PA结构的空隙尺寸对透水性的影响。

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