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Dissolution and Sorption Processes on the Surface of Calcite in the Presence of High Co 2+ Concentration

机译:Co 2+高浓度下方解石表面的溶解和吸附过程

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The interaction of the calcite surface with Co 2+ -rich aqueous solutions ([Co 2+ aq ] initial = 1000 ppm, i.e., ca. 17 mM) was investigated by means of macroscopic experiments and surface spectroscopic techniques. In the case of the macroscopic experiments, calcite powder and monocrystals were immersed into solutions for different time periods (from 1 min to one month). The Ca concentrations in the filtrates was measured by means of atomic absorption spectrometry (AAS) while the interacted solids were studied using a combination of X-ray photoelectron spectroscopy (XPS) and 12 C-rutherford backscattering spectrometry ( 12 C-RBS). The macroscopic data showed a characteristic surface dissolution process, in parallel to the surface sorption processes. Adsorption and co-precipitation were seen for almost the entire immersion period for both calcite powder and monocrystals. The surface study by XPS (analyzed at a depth of approximately 12 nm) suggested that adsorption takes place in the first hour of the interaction, followed by incorporation of Co 2+ into calcite surface layers, leading to the formation of a Co 2+ -bearing surface (co)precipitate, which occurs over a period of hours and days. The 12 C-RBS measurements on calcite { 10 1 ???ˉ 4 } indicated that the thickness of this surface co-precipitate was 270 nm after one day and then stabilized at 320 nm after more than a week.
机译:通过宏观实验和表面光谱技术研究了方解石表面与富含Co 2+的水溶液([Co 2+ aq]初始值= 1000 ppm,即约17 mM)之间的相互作用。在宏观实验的情况下,将方解石粉末和单晶浸入溶液中的时间不同(从1分钟到1个月)。通过原子吸收光谱法(AAS)测量滤液中的Ca浓度,同时使用X射线光电子能谱(XPS)和12 C-卢瑟福背散射光谱法(12 C-RBS)组合研究相互作用的固体。宏观数据显示出特征性的表面溶解过程,与表面吸附过程平行。对于方解石粉末和单晶,几乎在整个浸没期间都发生了吸附和共沉淀。 XPS的表面研究(在约12 nm的深度处进行分析)表明,吸附在相互作用的第一小时内发生,然后将Co 2+掺入方解石表面层中,导致形成Co 2+-轴承表面(共)沉淀会在数小时和数天的时间内发生。在方解石{10 1≈4}上的12 C-RBS测量表明,该表面共沉淀物的厚度在一天后为270 nm,然后在一周以上后稳定在320 nm。

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