Raman Spectroscopic Analysis of Electrochemically Oxidized Pyrite and Galena

S. Turcotte, R. E. Benner, A. Riley, J. Li, M. Wadsworth
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Abstract

Iron pyrite is a common constituent of coal and its presence during combustion leads to the production of sulfur dioxide and acid rain. Consequently, there is a large research effort dedicated to improving the methods of separating pyrite from coal. One method of separation is to utilize the natural hydrophobicity of many sulfide ores. It has been observed that under the correct conditions of pH and electropotential that sulfide minerals are sufficiently hydrophobic that they can be readily floated. This has been attributed this to the formation of elemental sulfur on the surface of the sulfide minerals [1]. Therefore, there is an interest in identifying the conditions that give rise to sulfur formation on the pyrite surface. In this study Raman spectroscopy is used to evaluate the pyrite surface in situ for various applied potentials. As a source of comparison, the surface products of galena (PbS) and electrodeposited sulfur on platinum are also given.
电化学氧化黄铁矿和方铅矿的拉曼光谱分析
铁黄铁矿是煤的一种常见成分,在燃烧过程中它的存在会导致二氧化硫和酸雨的产生。因此,有大量的研究工作致力于改进从煤中分离黄铁矿的方法。一种分离方法是利用许多硫化矿石的天然疏水性。已经观察到,在正确的pH和电势条件下,硫化矿物具有足够的疏水性,可以很容易地漂浮。这被归因于硫化物矿物表面单质硫的形成[1]。因此,人们对确定在黄铁矿表面产生硫的条件很感兴趣。本研究利用拉曼光谱法对黄铁矿表面的各种应用电位进行原位评价。作为比较,还给出了方铅矿(PbS)和铂上电沉积硫的表面产物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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