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ELECTROCHEMICAL METHOD FOR THE REMOVAL OF ARSENATE FROM DRINKING WATER

机译:电化学法从饮用水中去除砷的方法

摘要

The present invention provides an electrochemical method for the removal of arsenate from drinking water, wherein the arsenate is removed by adsorption of metal hydroxide, formed by 'in-situ' anodic oxidation. The electrochemical method, of the present invention, for the removal of arsenate from drinking water, obviates the drawbacks of the commonly used physico-chemical treatments processes such as lime softening, sorption techniques and membrane techniques. The electrochemical method consists of an electrochemical cell fitted with an anode of mild steel or aluminium plate and stainless steel cathode with an inter-electrode distance of 0.5 to 1.5cm. Drinking water containing 0.5 to 3.0 mg/l of arsenate at a pH in the range of 3-10 and at a temperature between 20-60°C is electrolysed at anode and cathode current densities between 0.05 - 0.2A.dm-2. The iron hydroxide / aluminium hydroxide formed from the anode during electrolysis adsorbs the arsenate present in the water and settles at the bottom. The removal efficiency of this method is up to 98%.
机译:本发明提供了一种用于从饮用水中去除砷酸盐的电化学方法,其中通过吸附由“原位”阳极氧化形成的金属氢氧化物来去除砷酸盐。本发明的用于从饮用水中去除砷酸盐的电化学方法消除了通常使用的物理化学处理方法的缺点,例如石灰软化,吸附技术和膜技术。电化学方法由电化学电池组成,该电化学电池装有低碳钢或铝板的阳极和电极间距离为0.5至1.5cm的不锈钢阴极。在阳极和阴极的电流密度在0.05-0.2A.dm-2之间,电解在0.5至3.0 mg / l的砷中,pH在3-10的范围内,温度在20-60°C之间的饮用水。电解过程中由阳极形成的氢氧化铁/氢氧化铝吸附水中的砷酸盐并沉淀在底部。该方法的去除效率高达98%。

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