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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Electrochemical characterization of pyrrhotite reactivity under simulated weathering conditions
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Electrochemical characterization of pyrrhotite reactivity under simulated weathering conditions

机译:模拟风化条件下磁黄铁矿反应性的电化学表征

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摘要

A previously reported methodology applied to evaluate the factors affecting the reactivity pyrite and pyritic samples under simulated weathering conditions is now utilized to analyze pyrrhotite reactivity at different environmental alteration stages. The methodology is based on the comparison of the voltammetric responses of the mineral obtained through the alteration process; changes in the electrochemical behavior are associated with changes in the surface state of the mineral and finally are related with changes of the mineral reactivity. The results of an initial study of the electrochemical behavior of pyrrothite before alteration suggest that its alteration involves the formation of 3 surface layers (in agreement with previous reports): (1) in immediate contact with pyrrhotite corresponding to a metal-deficient sulfide; (2) an intermediate layer corresponding to elemental S. and; (3) the most external layer, consisting of precipitates of Fe oxy-hydroxides, like goethite. The pyrrhotite reactivity seems to be controlled by the formation of oxidation product layers that coat and passivate the pyrrhotite surface, where the elemental S layer has most significance. The results confirm the advantage of incorporating cyclic voltammetry as an auxiliary method for acid rock drainage prediction. due to its demonstrated capacity to describe the factors that influence sulfide mineral reactivity which are not evaluated by other predictive techniques. (C) 2004 Elsevier Ltd. All rights reserved.
机译:以前报道的用于评估在模拟风化条件下影响黄铁矿和黄铁矿样品反应性的因素的方法现已用于分析在不同环境改变阶段的黄铁矿反应性。该方法是基于对通过蚀变过程获得的矿物的伏安响应的比较。电化学行为的变化与矿物的表面状态的变化有关,最后与矿物反应性的变化有关。硫黄铁矿在改变前的电化学行为的初步研究结果表明,其改变涉及3个表面层的形成(与以前的报道一致):(1)立即与黄铁矿接触,对应于金属缺陷的硫化物; (2)对应于元素S的中间层;和(3)最外层,由铁氢氧化物的沉淀物组成,如针铁矿。硫铁矿的反应性似乎由覆盖和钝化硫铁矿表面的氧化产物层的形成控制,其中元素S层最为重要。结果证实了结合循环伏安法作为酸性岩石排水预测的辅助方法的优势。由于其证明了描述影响硫化物矿物反应性的因素的能力,这些因素尚未通过其他预测技术进行评估。 (C)2004 Elsevier Ltd.保留所有权利。

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