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Characterization of a bipolar parallel-plate electrochemical reactor for water disinfection using low conductivity drinking water

机译:使用低电导率饮用水进行水消毒的双极平行板电化学反应器的特性

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A reactor was built, experimentally studied and modelled having six bipolar electrodes placed between the terminal ones, all of them were RuO2/Ir02 on a Ti sheet. The interelectrode gap was 1.5 mm. Plastic plates were optionally arranged in the inlet and outlet to the electrodes to produce entrance or exit regions. The Laplace equation was numerically solved for the solution phase to obtain the current and potential distribution. The calculations performed without entrance and exit regions show that the current distribution is pronounced at the thickness of the electrodes and at the electrode edges. The presence of the entrance and exit regions covers the electrode thickness, increases the current distribution and diminishes the leakage current. The hydrodynamics of the reactor was analyzed by the stimulus-response method and the best behaviour was obtained when the equipment was filled with glass beads. This reactor was tested analyzing the in-line production of sodium hypochlorite from drinking water. In a typical galvanostatic experiment, carried out at 10.3 A, with a volumetric flow rate of 2 dm~3 min~(-1) the hypochlorite concentration at the exit was 25 mg dm~(-3). In this case, the applied potential difference was 128 V and the current efficiency was 4.3%.
机译:建造了一个反应堆,进行了实验研究和建模,在末端电极之间放置了六个双极电极,它们都是在Ti板上的RuO2 / Ir02。电极间间隙为1.5mm。可选地在电极的入口和出口中布置塑料板以产生入口或出口区域。通过拉普拉斯方程对求解阶段进行数值求解,以获得电流和电势分布。在没有入口和出口区域的情况下进行的计算表明,电流分布在电极的厚度和电极边缘处明显。入口和出口区域的存在覆盖了电极的厚度,增加了电流分布并减小了漏电流。通过刺激响应法分析反应器的流体动力学,当设备充满玻璃珠时,可获得最佳性能。测试该反应器以分析饮用水中的次氯酸钠在线生产。在典型的恒电流实验中,在10.3 A下进行,体积流量为2 dm〜3 min〜(-1),出口处的次氯酸盐浓度为25 mg dm〜(-3)。在这种情况下,施加的电位差​​为128 V,电流效率为4.3%。

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