首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Using capacitive deionisation for inland brackish groundwater desalination in a remote location
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Using capacitive deionisation for inland brackish groundwater desalination in a remote location

机译:使用电容性去离子技术在偏远地区进行内陆微咸水淡化

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In this work, a portable prototype of capacitive deionisation (CDI) unit has been used first time in Wilora, a community in a remote area in Northern Territory, Australia, to remove salt from the brackish groundwater. The CDI unit has demonstrated sufficient salinity and hardness removal ability at the remote brackish water source. It was found that increased flow rate resulted in a decrease of the overall total dissolved solids removal efficiency. However, in terms of energy efficiency, a higher flow rate tended to be favourable. With the current CDI unit configuration and local water conditions, 7 L/min is recommended as the optimal operational parameter, with an energy consumption of around 1.89 kWh/m~3 of treated water. The total water recovery rate was between 75 and 80%. The electrosorption of NaCl onto the CDI cell assembly of 100 pair electrodes follows Langmuir adsorption isotherm and the pseudo-first-order adsorption kinetics. The portable CDI unit proves to be a viable alternative solution to brackish water treatment, especially in communities in remote areas where building a reverse osmosis treatment plant is not practical. The data and results shown in this work can be used as guidance for the on-site operation using this emerging technology.
机译:在这项工作中,首次在澳大利亚北领地偏远地区的维洛拉(Wilora)中使用了便携式电容去离子(CDI)单元原型,以从咸淡的地下水中去除盐分。 CDI装置在偏咸水源中已显示出足够的盐度和硬度去除能力。发现增加的流速导致总的总溶解固体去除效率降低。然而,就能量效率而言,较高的流速倾向于是有利的。在当前的CDI单元配置和当地水条件下,建议以7 L / min作为最佳运行参数,其能耗约为1.89 kWh / m〜3处理水。总的水回收率在75%至80%之间。 NaCl在100对电极的CDI电池组件上的电吸附遵循Langmuir吸附等温线和拟一级吸附动力学。事实证明,便携式CDI装置是微咸水处理的一种可行的替代解决方案,特别是在偏远地区的社区中,这些地区无法建立反渗透处理厂。这项工作中显示的数据和结果可以用作使用该新兴技术进行现场操作的指南。

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