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The effects of frother and collector distribution on flotation performance

机译:起泡剂和捕收剂分布对浮选性能的影响

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The distribution of frother reporting to the concentrate along a bank of cells and the adsorption of collector to valuable particles are important as they determine the froth structure and flotation performance. An understanding of this is required in order to formulate better reagent addition strategies. Techniques to measure the frother concentration in samples taken from industrial flotation circuits, including dynamic surface tension measurements, have proven inconclusive due to the low concentrations used and the effects of hydrophobic particles. In this study, a method of measuring the concentration of non-adsorbed reagents on a laboratory scale has been developed. Batch flotation experiments were carried out on an industrial sulphide ore. The adsorption of the collector (SIBX) and frother (Dowfroth 200) to the solid particles was determined by measuring the concentration remaining in filtered liquid samples taken from the concentrate and tails. Analysis was carried out using UV spectrometry and TOC analysis. It was found that 20 percent of the frother is lost in the presence of the SIBX and that after 2 min, 63 percent of the SIBX had adsorbed to particles. The results also showed that an increase in the initial concentration of SIBX, and an increase in the conditioning time yielded a higher concentrate grade.
机译:起泡报告沿着一排细胞向浓缩物的分布以及捕收剂对有价值颗粒的吸附非常重要,因为它们决定了起泡结构和浮选性能。为了制定更好的试剂添加策略,需要对此有所了解。由于使用的浓度低和疏水性颗粒的影响,已经证明了测量工业浮选回路中样品中起泡剂浓度的技术(包括动态表面张力测量)尚无定论。在这项研究中,已经开发了一种在实验室规模上测量未吸附试剂浓度的方法。批量浮选实验是在工业硫化矿石上进行的。收集器(SIBX)和起泡剂(Dowfroth 200)对固体颗粒的吸附是通过测量从浓缩物和尾料中提取的过滤后液体样品中残留的浓度来确定的。使用紫外光谱和TOC分析进行分析。发现在SIBX存在下损失了20%的起泡剂,在2分钟后,有63%的SIBX吸附到了颗粒上。结果还表明,SIBX初始浓度的增加和调节时间的增加产生了更高的精矿等级。

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