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Evaluation of collector adsorption by electrochemical impedance spectroscopy

机译:电化学阻抗谱法评估集电极的吸附

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Laboratory bench-scale flotation test is generally used as a standard method to investigate effects of different flotation reagents on flotation performance. A comprehensive test program requires large amount of representative samples, takes long time and could be costly. Hence, developing alternative cost effective, fast and low cost methods have recently been in the subject of many research studies. Microflotation, induction time measurement, electrochemical methods, etc. have been used to measure adsorption of flotation reagents and derive a proxy to correlate with flotation behaviors of sulfide minerals. In this study, Electrochemical Impedance Spectroscopy (EIS) method was used to measure rate of collector adsorption on two different pyrite rich samples from flotation plants processing Carlin and Yanacocha Verde ores. Eight different types of collectors were selected based on their chemistry and applications in flotation operations. Adsorption of the collectors were also measured by using Surface Enhanced Raman Spectroscopy (SERS) technique and correlated with EIS results. The results showed clearly that Carlin pyrite was more electrochemically reactive than Verde pyrite. Rate of adsorption of the collectors was related to coating resistance (R-c), which was calculated using an equivalent electrical circuit model fitted to the EIS data. Based on R-c values, order of adsorption of the collectors for Carlin and Verde samples were discussed. It is therefore shown that preliminary reagent selection for a specific ore can be done using EIS technique, which is considerably faster and low cost compared to the other techniques. (C) 2016 Elsevier B.V. All rights reserved.
机译:通常使用实验室规模的浮选试验作为研究不同浮选试剂对浮选性能影响的标准方法。全面的测试程序需要大量的代表性样品,需要很长时间,而且成本很高。因此,开发替代成本有效,快速和低成本的方法近来已成为许多研究的主题。微浮选,诱导时间测量,电化学方法等已用于测量浮选试剂的吸附并推导与硫化物矿物的浮选行为相关的代理。在这项研究中,使用电化学阻抗谱(EIS)方法来测量收集器在处理Carlin和Yanacocha Verde矿石的浮选厂的两种不同富黄铁矿样品上的吸附率。根据其化学性质和在浮选操作中的应用选择了八种不同类型的收集器。收集器的吸附也通过使用表面增强拉曼光谱(SERS)技术进行测量,并与EIS结果相关。结果清楚地表明,Carlin黄铁矿比Verde黄铁矿具有更高的电化学反应性。集电器的吸附速率与涂层电阻(R-c)有关,涂层电阻是使用适合EIS数据的等效电路模型计算得出的。基于R-c值,讨论了Carlin和Verde样品的捕收剂的吸附顺序。因此表明,可以使用EIS技术对特定矿石进行初步的试剂选择,与其他技术相比,该方法明显更快且成本更低。 (C)2016 Elsevier B.V.保留所有权利。

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