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方铅矿表面氧化过程中元素硫形成的物理化学分析。

Physical and chemical analysis of elemental sulfur formation during galena surface oxidation.

机构信息

School of Chemical Engineering, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

Langmuir. 2011 Apr 5;27(7):4190-201. doi: 10.1021/la104755a. Epub 2011 Mar 10.

Abstract

The surface oxidation of sulfide minerals, such as galena (PbS), in aqueous solutions is of critical importance in a number of applications. A comprehensive understanding of the formation of oxidation species at the galena surface is still lacking. Much controversy over the nature of these oxidation products exists. A number of oxidation pathways have been proposed, and experimental evidence for the formation of elemental sulfur, metal polysulfides, and metal-deficient lead sulfides in acidic conditions has been shown and argued. This paper provides further insight into the electrochemical behavior of galena at pH 4.5. Utilizing a novel experimental system that combines in situ electrochemical control and AC mode atomic force microscopy (AFM) surface imaging, the formation and growth of nanoscopic domains on the galena surface are detected and examined at anodic potentials. AFM phase images indicate that these domains have different material properties to the underlying galena. Continued oxidation results in nanoscopic pitting and the formation of microscopic surface domains, which are confirmed to be elemental sulfur by Raman spectroscopy. Further clarification of the presence of elemental sulfur is provided by Cryo-XPS. Polysulfide and metal-deficient sulfide could not be detected within this system.

摘要

硫化物矿物(如方铅矿,PbS)在水溶液中的表面氧化在许多应用中至关重要。但人们对方铅矿表面氧化产物的形成仍缺乏全面的了解。这些氧化产物的性质存在很大争议,有许多氧化途径被提出,并且已有实验证据表明并论证了在酸性条件下形成元素硫、金属多硫化物和缺金属的铅硫化物。本文进一步深入研究了 pH 值为 4.5 时方铅矿的电化学行为。利用一种新颖的实验系统,该系统结合了原位电化学控制和交流模式原子力显微镜(AFM)表面成像,在阳极电势下检测和检查了方铅矿表面纳米级畴的形成和生长。AFM 相图像表明,这些畴具有与下方方铅矿不同的材料特性。持续的氧化导致纳米级点蚀和微观表面畴的形成,通过拉曼光谱证实这些畴为元素硫。Cryo-XPS 进一步澄清了元素硫的存在。在该系统中未检测到多硫化物和缺金属的硫化物。

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