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首页> 外文期刊>Environmental Science and Pollution Research >Wastewater treatment in electrocoagulation systems: investigation of the impact of temperature using a fuzzy logic control algorithm
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Wastewater treatment in electrocoagulation systems: investigation of the impact of temperature using a fuzzy logic control algorithm

机译:电凝系统中的废水处理:使用模糊逻辑控制算法调查温度的影响

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摘要

In an electrocoagulation process, controlling various parameters, such as temperature, pH, and conductivity, increases the performance of the process. In this study, fuzzy logic algorithms were used to control the temperature of the electrocoagulation system for the removal of pollutants from textile wastewater. In the experimental part, we used a reactor with a cooling jacket to control the temperature, and the flow rate of the cooling water was a variable that we could manipulate. Also, we investigated the use of a single-variable fuzzy control process and a multivariable fuzzy control process to control the dynamic behavior of the system. In the single variable control process, the effect of temperature was investigated at chosen original temperatures, i.e., 17.2 degrees C, 20 degrees C, and 23 degrees C. In the multivariable control, the temperature-pH and temperature-conductivity pairs were controlled separately in different processes. When the removal efficiencies were determined for the two control approaches, it was observed that the temperature-pH control process outperformed the temperature-conductivity control process, and its removal efficiencies for COD, color, and turbidity were about 74.6%, 85.2%, and 91.0%, respectively. Thus, the results obtained from this study will be useful for other investigators in the field.
机译:在电凝过程中,控制各种参数,例如温度,pH和电导率,增加了该过程的性能。在该研究中,模糊逻辑算法用于控制从纺织废水中去除污染物的电凝系统的温度。在实验部件中,我们使用具有冷却套的反应器来控制温度,冷却水的流速是我们可以操纵的变量。此外,我们调查了使用单变模糊控制过程和多变量模糊控制过程来控制系统的动态行为。在单一可变控制过程中,在选择的原始温度下研究温度的影响,即17.2℃,20℃和23℃。在多变量控制中,温度-PH和温度导电对分开控制在不同的过程中。确定用于两种对照方法的去除效率时,观察到温度-PH控制过程优于温度导电性控制过程,鳕鱼,颜色和浊度的去除效率约为74.6%,85.2%分别为91.0%。因此,从该研究中获得的结果对于该领域中的其他调查人员将有用。

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