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High Total Dissolved Solids Water Treatment by Charged Nanofiltration Membranes Relating to Power Plant Applications

机译:通过与电厂应用相关的带电纳滤膜对高总溶解固体水进行处理

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摘要

Selective desalination through nanofiltration (NF) is of great interest for many industrial applications including reuse of power plant scrubber wastewater and treatment of water containing high concentrations of TDS (total dissolved solids). This work seeks to understand the effect ion interactions at the membrane interface have on rejection and flux performance of charged NF membranes. NF membranes were also effective for low energy desalination of scrubber wastewater from Georgia Power Plant Bowen, composed primarily of Ca2+, Mg2+, Cl, and SO42−. As NF membranes have the capability for selective separations, 80% water recovery was achieved experimentally while maintaining an overall rejection of over 60% for Ca2+ and Cl. The occurrence of CaSO4 precipitation at high water recovery was observed. The effect of precipitation on osmotic pressure and the effect of Cl counterions on increasing gypsum solubility were explored for water recovery operation. This work expands on a previous work on the topics of desalination of multi-ionic solutions by incorporating the use of large scale membrane modules (0.59 m) with several synthetic solutions as well as actual scrubber water containing precipitating elements, Ca2+ and SO42−. It was observed that the spiral wound membrane modules maintained a stable water permeability over the 144 day course of tests.
机译:通过纳滤(NF)进行的选择性脱盐对于许多工业应用非常重要,包括重复使用电厂洗涤塔废水和处理含高浓度TDS(总溶解固体)的水。这项工作旨在了解离子在膜界面处的相互作用对带电NF膜的排斥和通量性能的影响。 NF膜对佐治亚州电厂Bowen的洗涤器废水的低能脱盐也有效,该膜主要由Ca 2 + ,Mg 2 + ,Cl -和SO4 2-。由于NF膜具有选择性分离的能力,因此实验获得了80%的水回收率,同时Ca 2 + 和Cl -的总截留率保持在60%以上。观察到高水回收率下CaSO4沉淀的发生。探讨了降水对渗透压的影响以及Cl -抗衡离子对增加石膏溶解度的影响,以进行水的回收利用。通过结合使用大型膜组件(0.59 m )和几种合成溶液以及含有沉淀元素的实际洗涤塔水,该工作是在先前有关多离子溶液脱盐主题的工作的基础上扩展的,Ca 2 + 和SO4 2-。观察到在144天的测试过程中,螺旋卷绕膜组件保持稳定的水渗透性。

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