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High volumetric efficiency electrochemical cell design for treatment of low concentrations of contaminants in low conductivity water

机译:高容积效率电化学电池设计,用于处理低电导率水中的低浓度污染物

摘要

An electrochemical cell design is disclosed for the particular application of the electrochemical treatment of contaminants in water. The cell is designed to allow the treatment of low concentrations of contaminants in low conductivity water efficiently, and to be simple to fabricate. The design incorporates tapered inlet and outlet fluid flow manifolds so that the cell pressure drop will be almost entirely due to fluid contacting the electrodes, thus maximising the effective use of the system pump power. A short anode to cathode distance and thin working electrodes are used to minimise resistive electrical power losses. The parallel slacked arrangement of the electrodes and the smooth inlet and outlet designs leads to relatively even distributions of current density and mass transfer resulting in maximal utilisation of the entire active electrode surface area. The electrodes are connected internally in parallel in monopolar stack modules, and the modules are then connected externally in series, with insulating baffles to minimise current by-pass problems. This provides a simple cell construction (a minimum number of simple insulating baffles) while still simplifying the cell wiring and reducing the cell current demand (allowing lighter wiring to be used).
机译:公开了一种电化学电池设计,其用于水中污染物的电化学处理的特定应用。该电池的设计可有效处理低电导率水中的低浓度污染物,并且易于制造。该设计结合了锥形的入口和出口流体流动歧管,因此电池压力降几乎完全归因于流体与电极的接触,从而最大程度地有效利用了系统泵功率。较短的阳极到阴极距离和较薄的工作电极可最大程度地降低电阻式电功率损耗。电极的平行松弛布置以及平滑的入口和出口设计导致电流密度和质量传递相对均匀的分布,从而导致整个有源电极表面积的最大利用。电极在单极性堆叠模块中内部并联连接,然后模块在外部串联绝缘隔板,以最大程度地减小电流旁路问题。这提供了简单的电池结构(最少数量的简单绝缘挡板),同时仍简化了电池布线并减少了电池电流需求(允许使用更轻的布线)。

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