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Investigation of fluoride removal from low-salinity groundwater by single-pass constant-voltage capacitive deionization

机译:单程恒压电容去离子对低盐度地下水除氟的研究

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Capacitive deionization (CDI) is attracting increasing attention as an emerging technology for the facile removal of ionic species from water. In this work, the feasibility of fluoride removal from low-salinity groundwaters by single-pass constant-voltage CDI was investigated and a model developed to describe the dynamic fluoride electrosorption behavior. Effects of operating parameters including charging voltage and pump flow rate as well as impact of fluoride and chloride feed concentrations on the effluent fluoride concentration and equilibrium fluoride adsorption capacity were studied and the obtained data used to validate the model. Using the validated model, the effects of various design parameters, including arrangement of multiple CDI cells, on fluoride removal were assessed. Single-pass constant-voltage CDI was found to be effective in removing fluoride from low-salinity groundwaters but, as expected, removal efficiency was compromised in waters of high salinity. The relatively simple electrosorption model developed here provided a satisfactory description of both fluoride removal and current evolution and would appear to be a useful tool for prediction of CDI performance over a range of operating conditions, cell arrangements and feed water compositions though scope for model improvement exists. (C) 2016 Elsevier Ltd. All rights reserved.
机译:电容去离子(CDI)作为一种易于从水中去除离子物质的新兴技术,受到越来越多的关注。在这项工作中,研究了通过单程恒压CDI从低盐度地下水中除去氟化物的可行性,并建立了描述动态氟化物电吸附行为的模型。研究了操作参数(包括充电电压和泵流量)以及氟化物和氯化物进料浓度对废水中氟化物浓度和平衡氟化物吸附容量的影响,并将所得数据用于验证模型。使用经过验证的模型,评估了各种设计参数(包括多个CDI电池的布置)对除氟的影响。发现单程恒压CDI可有效去除低盐度地下水中的氟化物,但正如预期的那样,高盐度水的去除效率受到影响。这里开发的相对简单的电吸附模型提供了令人满意的氟化物去除和电流释放的描述,尽管存在模型改进的范围,但它似乎是预测一系列操作条件,电解槽布置和给水成分中CDI性能的有用工具。 。 (C)2016 Elsevier Ltd.保留所有权利。

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