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Investigation of column flotation process on sulphide ore using 2-electrode capacitance sensor: The effect of air flow rate and solid percentage

机译:使用2电极电容传感器的硫化物矿石柱浮选过程的研究:空气流速和固体百分比的影响

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Investigation of column flotation process on sulphide ore using 2-electrode capacitance sensor is presented in this paper. The effect of air flow rate and solid percentage on column flotation process has been experimentally investigated. The purpose of this paper is to understand the capacitance signal characteristic affected by the air flow rate and the solid percentage which can be used to determine the metallurgical performance. Experiments were performed using a laboratory column flotation cell which has a diameter of 5 cm and the total height of 140 cm. The sintered ceramic sparger and wash water were installed at the bottom and above of the column. Two-electrode concave type capacitance sensor was also installed at a distance of 50 cm from the sparger. The sensor was attached to the outer wall of the column, connected to data acquisition system, manufactured by CTECH Labs Edwar Technology and personal computer for further data processing. Feed consisting ZnS and SiO_2 with the ratio of 3P2 was mixed with some reagents to make 1 litre of slurry. The slurry was fed into the aerated column at 100 cm above the sparger with a constant rate and the capacitance signals were captured during the process. In this paper, 7.5 and 10% of solid and 2-4 L/min of air flow rate with 0.5 L/min intervals were used as independent variables. The results show that the capacitance signal characteristics between the 7.5 and 10% of solid are different at any given air flow rate in which the 10% solid produced signals higher than those of 7.5%. Metallurgical performance and capacitance signal exhibit a good correlation.
机译:本文介绍了使用2电极电容传感器的硫化物矿石柱浮选过程的研究。实验研究了空气流速和固体百分比对柱浮选过程的影响。本文的目的是了解受空气流速影响的电容信号特性和可用于确定冶金性能的固体百分比。使用直径为5cm的实验室柱浮选细胞进行实验,并且总高度为140cm。烧结陶瓷喷射器和洗涤水安装在塔的底部和上方。两个电极凹入型电容传感器也安装在距离喷射器50厘米的距离。传感器连接到柱的外壁,连接到数据采集系统,由CTECH Labs Edwar技术和个人计算机制造,以进行进一步的数据处理。将ZnS和SiO_2组成的ZnS和SiO_2的饲料与一些试剂混合,以制成1升浆料。将浆料在100cm以上以100cm送入到的喷射柱,恒定速率在该过程期间捕获电容信号。在本文中,7.5和10%的固体和2-4升/分钟的空气流速,用0.5升/分钟间隔用作独立变量。结果表明,7.5和10%固体之间的电容信号特性在任何给定的空气流速下都不同,其中10%固体产生的信号高于7.5%。冶金性能和电容信号表现出良好的相关性。

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