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首页> 外文期刊>Geochemistry: Exploration, Environment, Analysis >Redox front formation in fractured crystalline rock: an analogue of matrix diffusion in an oxidizing front along water-conducting fractures
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Redox front formation in fractured crystalline rock: an analogue of matrix diffusion in an oxidizing front along water-conducting fractures

机译:裂隙结晶岩中氧化还原锋的形成:沿水导裂缝在氧化锋中的基质扩散模拟

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摘要

Redox fronts may be formed in the geological environment surrounding a shallow geological repository for radioactive waste due to oxidized pore water infiltration. Such oxidation fronts can exert an influence on contaminant retardation during matrix diffusion via redox changes and direct fixation by accumulated oxides. However, the process of matrix diffusion in oxidizing fractured crystalline rocks has rarely been described. This study focuses on a redox front in Cretaceous granitic rocks from central Japan. Detailed observations reveal that ferric iron has accumulated at grain boundaries and formed micro-spherical Fe-oxyhydroxide aggregations. Geochemical analyses with X-ray fluorescence, inductively coupled plasma–mass spectrometry and electron probe microanalysis examination show that rare earth elements, Cs and U have migrated to the front. Uranium, in particular, has been enriched at the front edge and probably retained by Fe-oxyhydroxides and this relationship persists in the oxidizing zone, presumably due to the strong adsorption capacity of the oxyhydroxides. These findings suggest that matrix diffusion in the oxidizing zone also can be an effective contaminant retardation.
机译:由于 氧化孔隙水的渗透,可能在 浅层放射性废物地质处置库周围的地质环境中形成氧化还原锋。这样的氧化前沿可以通过氧化还原变化和积累的氧化物直接固定,在基质扩散过程中对污染物阻滞产生影响。但是,很少有人描述氧化 断裂的晶体岩石中基质的扩散过程。这项研究主要研究日本中部白垩纪花岗岩岩石中的氧化还原锋。详细的观察结果表明,铁 已经聚集在晶界处,并形成了微球形的 羟基氧化铁聚集体。 X射线荧光化学分析,电感耦合等离子体质谱法和电子探针显微分析表明,稀有的稀土元素,Cs和U具有迁移到前面。特别是铀, 已在前端富集,可能被氧化铁氢氧化物保留了 ,并且这种关系在氧化区中一直存在 由于羟基氧化物的强吸附能力 。这些发现表明,基质 在氧化区中的扩散也可能是有效的污染物 延迟。

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