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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Energy consumption in membrane capacitive deionization for different water recoveries and flow rates, and comparison with reverse osmosis
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Energy consumption in membrane capacitive deionization for different water recoveries and flow rates, and comparison with reverse osmosis

机译:膜电容去离子中不同水回收率和流速的能耗,以及与反渗透的比较

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摘要

Membrane capacitive deionization (MCDl) is a non-faradaic, capacitive technique for desalinating brackish water by adsorbing ions in charged porous electrodes. To compete with reverse osmosis, the specific energy consumption of MCDl needs to be reduced to less than 1 kWh per m~3 of freshwater produced. In order to investigate the energy consumption of MCDI, we present here the energy consumption, and the fraction of energy that can be recovered during the ion desorption step of MCDI, as a function of influent concentration, water flow rate and water recovery. Furthermore, the energy consumption of MCDI based on experimental data of our lab-scale system is compared with literature data of reverse osmosis. Comparing with literature data for energy consumption in reverse osmosis, we find that for feed water with salinity lower than 60 mM, to obtain freshwater of-1 g TDS/L, MCDl can be more energy efficient.
机译:膜电容去离子(MCD1)是一种非法拉第电容技术,用于通过吸附带电多孔电极中的离子来淡化微咸水。为了与反渗透竞争,需要将MCD1的单位能耗降低至每m〜3所产生的淡水小于1 kWh。为了研究MCDI的能量消耗,我们在此介绍了能量消耗以及MCDI离子解吸步骤中可回收的能量分数,它是进水浓度,水流速和水回收率的函数。此外,将基于我们实验室规模系统的实验数据的MCDI的能耗与反渗透的文献数据进行了比较。与反渗透能耗的文献数据相比较,我们发现对于盐度低于60 mM的给水,要获得-1 g TDS / L的淡水,MCD1可以更加节能。

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