首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >CHEMICAL DISSOLUTION OF THE GALENA(001) SURFACE OBSERVED USING ELECTROCHEMICAL SCANNING TUNNELING MICROSCOPY
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CHEMICAL DISSOLUTION OF THE GALENA(001) SURFACE OBSERVED USING ELECTROCHEMICAL SCANNING TUNNELING MICROSCOPY

机译:电化学扫描隧道显微镜观察加仑(001)表面的化学溶解

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The chemical dissolution of galena(001) surfaces immersed in acidic and neutral sulfate electrolyte solutions was investigated using Electrochemical Scanning Tunneling Microscopy (ECSTM). The nanometer-scale detail provided by the STM in this investigation provides new mechanistic information regarding surface dissolution processes at the mineral/water interface. In acidic solutions (pH = 2.7), we observe that dissolution occurs by selective removal of step edge species. This process is crystallographically anisotropic, resulting in steps with [110] orientations. Under neutral pH conditions (pH = 7), the dissolution rate is significantly lower, and no preferential step edge orientation is observed. The anisotropy observed in acidic solutions is attributed to different kinetic rates of dissolution along the [110] and [100] directions. Furthermore, we propose that the rate limiting step in the dissolution mechanism is the desorption of hydrosulfide (HS-) from step edges. The origin of the crystallographic anisotropy is discussed in terms of possible atomic structures of the step edges. [References: 40]
机译:使用电化学扫描隧道显微镜(ECSTM)研究了浸在酸性和中性硫酸盐电解质溶液中的方铅矿(001)表面的化学溶解。 STM在这项研究中提供的纳米级细节为矿物/水界面的表面溶解过程提供了新的机械信息。在酸性溶液(pH = 2.7)中,我们观察到通过选择性去除台阶边缘物质而发生溶解。该过程在晶体学上是各向异性的,导致具有[110]取向的步骤。在中性pH条件(pH = 7)下,溶解速率明显降低,并且未观察到优先的台阶边缘取向。在酸性溶液中观察到的各向异性归因于沿[110]和[100]方向的溶解动力学速率不同。此外,我们提出了溶解机理中的限速步骤是从步骤边缘解吸氢硫化物(HS-)。根据台阶边缘的可能原子结构讨论了晶体学各向异性的起源。 [参考:40]

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