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Application of electrodialysis for the treatment of almond industry wastewater

机译:电渗析在杏仁工业废水处理中的应用

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摘要

In this work, electrodialysis has been proved to be a suitable technique for decreasing the conductivity of a real wastewater from an almond industry, which has been previously treated by electrocoagulation (EC) and electrooxidation (EO). A seven-cell electrodialyzer, with total active membrane area of 1400 cm2, was employed and several parameters, as the limiting current density, were determined. A method for measuring voltage across the membranes was developed, in order to control membrane fouling. The method consisted of capillaries inserted into the solution compartments and connected to a high impedance voltmeter. A study of the reuse of the concentrate solution was made, and it was stated that it can be concentrated 10 times. The treatment of the wastewater was performed at different voltages (7–16 V) to reach values of conductivity of the diluate of 0.5 mS cm−1. After that, the scaling up to a pre-industrial scale was performed by using a 70-cell electrodialyzer, with total active membrane area of 3.5 m2. The process was performed by applying voltages of 20–70 V and a final conductivity of the diluate of 0.5 mS cm−1 was achieved. The electric energy consumption was calculated in every case.
机译:在这项工作中,电渗析已被证明是一种降低杏仁工业中真实废水电导率的合适技术,该工艺先前已通过电凝(EC)和电氧化(EO)处理。使用总活性膜面积为1400 cm2的七室电渗析器,并确定了一些参数作为极限电流密度。为了控制膜结垢,开发了一种测量跨膜电压的方法。该方法包括将毛细管插入溶液室并连接到高阻抗电压表。对浓缩液的再利用进行了研究,据称可以浓缩10倍。在不同的电压(7–16 V)下对废水进行处理,以达到0.5 mS cm-1的稀释液电导率值。之后,通过使用70池电渗析仪,将总活性膜面积为3.5 m2,按比例放大到工业规模。该过程是通过施加20–70 V的电压执行的,稀释液的最终电导率为0.5 mS cm-1。在每种情况下都计算出电能消耗。

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