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Intensification of phosphate removal using electrocoagulation treatment by continuous pH adjustment and optimal electrode connection mode

机译:通过连续调节pH值和最佳电极连接方式,通过电凝处理强化磷酸盐去除

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This paper discusses two possible ways of intensifying the electrocoagulation treatment of water containing phosphate. The first one consists of controlling the chemical composition of the water by continuous adjustment of the pH. The second aspect focuses on electrode connection modes, and the four different modes were tested monopolar in series, in parallels and independents, and finally bipolar. Experiments were conducted in a small batch reactor containing water with 100mgP/L using electrodes of aluminum. Several electrical connections were used for the water treatment under favorable operating conditions determined by a study and presented in a previous paper. The influence of pH adjustment was conducted using different adjustment step times (no adjustment, every 30, 10 and 5min). The kinetics of the treatment was found to be accelerated by continuous adjustment of the pH. The choice of the electrode connection modes was found to strongly affect the efficiency of the treatment, the Faradic yield, and the consumption of energy. The monopolar in parallels connection mode was found to be the most economic, whereas bipolar in parallels was found to favor a higher kinetic rate of treatment.
机译:本文讨论了两种加强含磷酸盐水电凝处理的可能方法。第一个步骤包括通过连续调节pH值来控制水的化学成分。第二个方面着眼于电极连接模式,对四种不同模式进行了单极串联,并联和独立测试,最后是双极测试。使用铝电极在装有100mgP / L水的小批量反应器中进行实验。一项研究确定并在先前的论文中介绍了几种电气连接件,用于在有利的工作条件下进行水处理。使用不同的调节步骤时间(每30、10和5分钟不进行调节)进行pH调节的影响。发现通过连续调节pH可以加速处理的动力学。发现电极连接方式的选择会极大地影响处理效率,法拉第收率和能量消耗。发现单极并联模式是最经济的,而双极并联模式则有利于更高的治疗动力学速率。

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