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High-Voltage Monitoring in Electrostatic Separators

机译:静电分离器的高压监控

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High voltage is known to be one of the main control variables in any electrostatic-separation process. From this perspective, the aim of this paper is twofold: to develop an effective high-voltage monitoring system and to demonstrate that it can be a useful tool for controlling the overall operating conditions of an electrostatic-separator system. A custom-designed virtual instrument was employed for processing the experimental data provided by a high-voltage probe, the output of which was connected to an electrometer. In several experiments, the output of the high-voltage probe was also connected to a digital oscilloscope, in order to obtain a better understanding of the variation of the electrode potential after a spark discharge. The laps of time without corona discharge and/or with low electric field intensities could thus be accurately determined, and the impact of the spark discharges on the outcome of the separation process evaluated. The dispersion of high-voltage measured values was found to increase in the presence of the material. The statistical analysis of the data revealed a significant correlation between the standard deviation of the high-voltage and the concentration of metal in the processed material. The results of this paper could be helpful for those seeking the optimization of the operating conditions for the electrostatic separation applications, in which the metal content in the feed materials exhibits substantial fluctuation with time
机译:众所周知,高压是任何静电分离过程中的主要控制变量之一。从这个角度出发,本文的目的是双重的:开发有效的高压监控系统,并证明它可以作为控制静电分离器系统总体运行状况的有用工具。使用定制设计的虚拟仪器处理高压探头提供的实验数据,高压探头的输出连接到静电计。在一些实验中,高压探头的输出还连接到数字示波器,以便更好地了解火花放电后电极电势的变化。因此可以精确地确定没有电晕放电和/或具有低电场强度的时间段,并且可以评估火花放电对分离过程结果的影响。发现在材料存在下,高压测量值的离散度增加。数据的统计分析表明,高压标准偏差与加工材料中金属浓度之间存在显着相关性。本文的结果可能对那些寻求优化静电分离应用操作条件的人有所帮助,在这些条件下,进料中的金属含量随时间表现出较大的波动

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