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Fluoride and nitrate removal from brackish groundwaters by batch-mode capacitive deionization

机译:通过分批模式电容去离子从苦咸水中去除氟化物和硝酸盐

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Capacitive deionization (CDI) is an emerging water desalination technology in which pairs of porous electrodes are electrically charged to remove ionic species from water. In this work, the feasibility of fluoride and nitrate removal from brackish groundwaters by batch-mode CDI was investigated. Initially, the effects of flow rate, initial fluoride concentration, and initial coexisting NaCl concentration on fluoride removal were studied. The steady-state fluoride concentration declined as the initial fluoride concentration decreased while initial NaCl concentration remained constant. Due to the competitive electrosorption between fluoride and chloride for limited pore surface sites, a higher initial chloride concentration resulted in a higher equilibrium dissolved fluoride concentration. A simplified one-dimensional transport model for dual anions was developed and found to reliably describe the dynamic process of removal of both fluoride and chloride ions in CDI cells over a range of well-defined operating conditions. Based on the ability of the model to describe fluoride removal, it was extended to description of nitrate removal from brackish groundwaters and also found to perform well. Thus, the approach to description of ion removal, at least in batch studies, appears robust and should assist in optimization of design and operating conditions such that optimal removal of trace ionic species is achieved even when high background concentrations of salt are present. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电容去离子(CDI)是一种新兴的水脱盐技术,其中成对的多孔电极带电以从水中去除离子物质。在这项工作中,研究了通过分批模式CDI从微咸水中去除氟化物和硝酸盐的可行性。最初,研究了流速,氟化物初始浓度和NaCl初始共存浓度对除氟的影响。稳态氟化物浓度随着初始氟化物浓度的降低而下降,而初始NaCl浓度保持恒定。由于氟化物和氯化物之间对于有限的孔表面部位具有竞争性电吸附作用,因此较高的初始氯化物浓度会导致较高的平衡溶解氟化物浓度。建立了简化的双阴离子一维传输模型,发现该模型可靠地描述了在一系列明确定义的操作条件下去除CDI池中氟离子和氯离子的动态过程。基于该模型描述氟化物去除的能力,将其扩展到描述微咸地下水中硝酸盐去除的描述,并且也表现良好。因此,至少在批量研究中,描述离子去除的方法似乎很健壮,并且应该有助于优化设计和操作条件,从而即使存在高背景盐浓度时也可以实现痕量离子物种的最佳去除。 (C)2015 Elsevier Ltd.保留所有权利。

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