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吸附在黑云母和白云母上的铯的微观分布。

Microscale distribution of cesium sorbed to biotite and muscovite.

作者信息

McKinley James P, Zachara John M, Heald Steven M, Dohnalkova Alice, Newville Matthew G, Sutton Steve R

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

Environ Sci Technol. 2004 Feb 15;38(4):1017-23. doi: 10.1021/es034569m.

Abstract

Individual 1-3 mm biotite and muscovite clasts from Hanford sediment were contacted with 0.08 M CsNO3. They were examined using electron or X-ray microprobe methods, as intact specimens or sectioned perpendicular to their basal planes. Cs+ was observed to preferentially sorb to mica edges, steps on mica surfaces, or fractured regions. The localization of Cs conformed to hypothesized strong binding to frayed edge sites in preference to sites on basal planes. In section, Cs+ was found to penetrate the mica interior, forming discrete zones of concentration, particularly in muscovite. In biotite, Cs was more abundant, permeating the clasts, but also forming discrete zones of higher concentration. Concentrated Cs on both clast edges and within clast interiors corresponded to microscopic but relatively extensive zones where K was depleted. The localization of sorbed Cs in areas where K was depleted suggested that weathering reactions had caused the formation of frayed edge sites within the micas. Cs+ accessed crystal interiors by diffusion along channels following crystal defects, cracks, or partings where pore fluids had previously migrated to form the interior alteration zones. On the nanometer scale, areas with localized Cs were disrupted, confirming that frayed edge sites were developed in clast interiors.

摘要

将来自汉福德沉积物中1 - 3毫米的黑云母和白云母碎屑与0.08 M的CsNO₃接触。使用电子或X射线微探针方法对其进行检查,检查时标本保持完整或垂直于其基面进行切片。观察到Cs⁺优先吸附在云母边缘、云母表面的台阶或断裂区域。Cs的定位符合这样的假设,即它优先与磨损边缘位点而非基面位点发生强结合。在切片中,发现Cs⁺穿透云母内部,形成离散的浓度区,特别是在白云母中。在黑云母中,Cs含量更高,渗透到碎屑中,但也形成了较高浓度的离散区。碎屑边缘和碎屑内部的Cs富集对应于K含量降低的微观但相对广泛的区域。吸附的Cs在K含量降低的区域中的定位表明,风化反应导致云母内部形成了磨损边缘位点。Cs⁺通过沿着晶体缺陷、裂缝或孔隙流体先前迁移形成内部蚀变带的分界面的通道扩散进入晶体内部。在纳米尺度上,Cs局部化的区域受到破坏,这证实了碎屑内部形成了磨损边缘位点。

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