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首页> 外文期刊>Drying technology: An International Journal >Influence of Electric Field Application with Decreasing One Sided Area of Electrodes on Electro-Osmotic Dewatering
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Influence of Electric Field Application with Decreasing One Sided Area of Electrodes on Electro-Osmotic Dewatering

机译:减小电极一侧面积的电场施加对电渗脱水的影响

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摘要

Electro-osmotic dewatering is typically operated under an electric field of direct current condition.In the process of electro-osmotic dewatering,water content in part of the material near the electrode opposite to the drainage surface is locally reduced,resulting in an increase of electrical contact resistance between the electrode and the material being dewatered.Then the efficiency of the electro-osmotic dewatering process is reduced remarkably.In order to improve the performance of electro-osmotic dewatering,it is supposed that a porous plate-type electrode used generally opposite to the drainage surface may be replaced to several rod-type electrodes,which are inserted into the material with dewatering.Using rod-type electrodes,the area of those electrodes becomes smaller than the plate-type electrode.From this point of view,electro-osmotic dewatering was experimentally investigated by decreasing one-sided area of electrodes,namely the area of the plate-type electrode opposite to the drainage surface,and the influence of such an electric field application on improvement of the dewatering process is discussed in this article.
机译:电渗脱水通常在直流条件下进行。在电渗脱水过程中,与排水表面相对的电极附近的部分材料中的水分会局部减少,从而导致电的增加电极与被脱水材料之间的接触电阻。然后电渗脱水过程的效率显着降低。为了提高电渗脱水的性能,假定多孔板型电极通常与排水表面上的电极可以替换成几个棒状电极,然后通过脱水将其插入到材料中。使用棒状电极,这些电极的面积变得小于板状电极。从这个角度来看,电通过减少电极的一侧面积(即与t相对的板状电极的面积)来进行渗透渗透试验本文讨论了排水面,以及这种电场施加对改善脱水过程的影响。

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