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Measurement of water permeation kinetics across reverse osmosis and nanofiltration membranes: Apparatus development

机译:跨反渗透和纳滤膜的水渗透动力学测量:仪器开发

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An apparatus has been developed to accurately measure the unsteady permeation of pure water through permselective reverse osmosis (RO) and nanofiltration membranes under an osmotic pressure gradient (aka forward osmosis). The key component of the apparatus is a capacitance-based level sensor with a flowrate resolution of 15-50 nL/s. The measurement protocol is an application of the familiar time-lead analysis that assumes the membrane is presaturated with water. Thus, two membrane parameters could ultimately be extracted: one which relates to water mobility and another related to water solubility. This paper presents a description of the apparatus design and operation including control measurements which were used in establishing the experimental uncertainties. To illustrate the technique, data are presented for a thin film composite seawater desalination membrane. These initial measurements of the water back-diffusion through a seawater RO membrane, which was exposed to varying levels of free chlorine, illustrate the utility of the technique for monitoring subtle changes in a membrane's material properties. A limited number of pressure-driven filtration measurements using 10,000 ppm NaCl solution are presented to confirm the apparent trends of membrane-damage indicated by the diffusion measurements. In the cases presented, only a simple, steady diffusion model was used to quantify the diffusion results in terms of the permeance. Of course, "gross" damage to the membrane removes its capability of supporting the osmotic pressure gradient, and this case is easily detected with this measurement technique.
机译:已经开发出一种设备,该设备可以在渗透压梯度(又称为正向渗透)下,通过渗透选择性反渗透(RO)和纳滤膜准确测量纯净水的不稳定渗透。该设备的关键组件是基于电容的液位传感器,其流速分辨率为15-50 nL / s。测量规程是熟悉的时间超前分析的一种应用,它假定膜已被水饱和。因此,最终可以提取两个膜参数:一个与水的流动性有关,另一个与水的溶解度有关。本文介绍了设备设计和操作的说明,包括用于确定实验不确定性的控制措施。为了说明该技术,提供了薄膜复合海水淡化膜的数据。通过暴露在不同水平的游离氯中的海水反渗透膜对水进行反扩散的这些初始测量值说明了该技术用于监测膜材料特性的细微变化的实用性。提出了使用10,000 ppm NaCl溶液进行的有限数量的压力驱动过滤测量,以确认由扩散测量表明的膜损伤的明显趋势。在呈现的情况下,仅使用简单,稳定的扩散模型来根据磁导率量化扩散结果。当然,对膜的“严重”损坏消除了其支持渗透压梯度的能力,这种情况很容易用这种测量技术检测到。

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