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Modeling and Automation of the Electrocoagulation Process in Water Treatment

机译:水处理电凝制过程的建模与自动化

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Electrocoagulation is successfully used for purifying various industrial wastewaters. In order to improve the quality of wastewater treatment and to reduce economic costs for achieving the specified pollution indicators, an automation system for controlling the wastewater treatment by an electrocoagulation method has been developed. A phenomenological mathematical model of the electrocoagulation process has been adapted for the investigation of the effect of current suppfy on the quafity of wastewater treatment. The estimation of the dynamic characteristics of the electrocoagulation processes and the investigation of the influence of current supply on the concentration of the inlet pollution is made by means of simulation modeling. Based on experimental data a method of determination of regulator adjustment has been developed. A simulation model of the electrocoagulation process taking into account geometrical dimensions of the reactor, volume flow rate of the liquid and the applied current supply has been elaborated. An automation system for controlling concentration of nickel ions with an algorithm of operation for minimum power expenses has been proposed. The automation provides real-time control of the system based on SCADA-system WinCC Flexible. The automation control system with Pregulator can conserve up to 21.4% of power expenses.
机译:电凝可成功地用于净化各种工业废水。为了提高废水处理的质量,并降低实现指定污染指标的经济成本,已经开发了一种通过电凝方法控制废水处理的自动化系统。电凝工艺的现象学数学模型已经适用于调查当前SuppFy对废水处理的效果的研究。通过仿真建模对电凝过程的动态特性和电流供应对入口污染浓度的影响的估计。基于实验数据,已经开发了一种确定调节器调整的方法。考虑了反应器的几何尺寸的电凝过程的仿真模型,阐述了液体的体积流量和施加的电流供应。提出了一种用于控制具有用于最小电力费用算法的镍离子浓度的自动化系统。自动化提供基于SCADA系统WinCC Flexible的系统的实时控制。具有前置机的自动化控制系统可以保存高达21.4%的电力费用。

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