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Influence of pH and temperature on the early stage of mica alteration

机译:pH和温度对云母蚀变早期的影响

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Mineral dissolution and precipitation reactions actively participate in controlling fluid chemistry during water-rock interaction. In this study, the changes in the biotite and muscovite basal surface nano-morphology were evaluated during interaction with fluids of different pH (pH = 1.1, 3.3 and 5.7) at different temperatures (T=25°, 120°, and 200. °C). Results show that at the nanometre scale resolution of the atomic force microscope (AFM), dissolution generates etch pits with a stair-shaped pattern over the (0. 0. 1) surface. The flux of dissolved elements decreases when pH increases. However, at pH _5.7, a change was found in the flux after 42. h of reaction when abundant gibbsite and kaolinite coat the dissolving mineral surface. This phenomenon was widely observed at edges of the etch pits by AFM. It was also found that an increase in temperature produces an enhancement in the elemental flux in both micas. Dissolution regime changes after less than one day of interaction at high temperature because of abundant coating formation over the etch pits and edges. The results demonstrate the key role of nanometre size neogenic phases in the control of elemental flux from mica surfaces to solution. The formation of nanometre size coatings, blocking the sites active for dissolution, appears to control the alteration of phyllosilicates even at the early stage of the interaction.
机译:矿物溶解和沉淀反应在水-岩相互作用期间积极参与控制流体化学。在这项研究中,在不同温度(T = 25°,120°和200°)下与不同pH值(pH = 1.1、3.3和5.7)的流体相互作用期间,评价了黑云母和白云母基底表面纳米形态的变化。 C)。结果表明,在原子力显微镜(AFM)的纳米级分辨率下,溶解会在(0. 0. 1)表面上生成带有阶梯形图案的蚀刻坑。 pH升高,溶解元素的通量降低。然而,在pH _5.7时,当大量的三水铝石和高岭石覆盖溶解的矿物表面时,在反应42. h后通量发生了变化。通过AFM在蚀刻坑的边缘处广泛观察到该现象。还发现,温度升高会导致两个云母中元素通量的增加。由于在蚀刻凹坑和边缘上形成了大量的涂层,因此在高温下相互作用不到一天后,溶解状态就会发生变化。结果证明了纳米级新相在控制从云母表面到溶液的元素通量中的关键作用。纳米尺寸涂层的形成,阻止了溶解的活性位点,似乎在相互作用的早期就控制着页硅酸盐的变化。

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