首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Using activated carbon electrode in electrosorptive deionization of brackish water
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Using activated carbon electrode in electrosorptive deionization of brackish water

机译:使用活性炭电极对微咸水进行电吸附去离子

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摘要

The electrosorptive deionisation process has been investigated to develop the technology into a system for desalination.Experiments have been conducted in a reactor system and it has been found that the activated carbon has some deionisation capacity due to its very high adsorption capacity and conductivity,so it can be used as an alternative electrode material.Surface modifications have been made to the activated carbon material,including alkaline treatment and loading of titanium dioxide nanoparticles.The specific surface areas(BET),average pore size and total pore volume were analysed by surface area and porosity analyzer.The modified electrode material demonstrated enhanced electrosorption capacity and reduced physical sorption at the pores,so desorption is more efficient.An innovative approach for desorption of the saturated activated carbon electrodes has been tried using ultrasonic vibration and increased temperature,the results of regeneration in water,aided by ultrasonic at 20°C and 50°C are presented as well.Cyclic voltammetry experiments at various scan rates were conducted using a potentiostat to analyse the electrical double-layer capacitance of the activated carbon materials.This preliminary study demonstrated that activated carbon granules have the potential to be cost-effective electrode materials for desalting brackish water.The improvement of the electrosorption efficiency can be achieved by surface modification by chemicals and metal oxide nanoparticles such as TiO2.
机译:研究了电吸附去离子工艺以将该技术发展为脱盐系统。在反应器系统中进行了实验,发现活性炭由于其极高的吸附能力和电导率而具有一定的去离子能力。可对活性炭材料进行表面改性,包括碱处理和二氧化钛纳米粒子的负载量。按表面积分析比表面积(BET),平均孔径和总孔径改性后的电极材料表现出增强的电吸附能力,减少了孔处的物理吸附,因此解吸效率更高。已尝试了一种利用超声波振动和升高温度对饱和活性炭电极进行解吸的创新方法,水中的再生,超声波在20还介绍了°C和50°C。使用恒电位仪在各种扫描速率下进行循环伏安实验,以分析活性炭材料的双电层电容。该初步研究表明,活性炭颗粒具有潜在的制造潜力。用于微咸水脱盐的经济有效的电极材料。通过化学药品和金属氧化物纳米颗粒(如TiO2)进行表面改性,可以提高电吸附效率。

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