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首页> 外文期刊>Mineralogical Magazine >Interfacial reactivity of radionuclides: emerging paradigms from molecular-level observations
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Interfacial reactivity of radionuclides: emerging paradigms from molecular-level observations

机译:放射性核素的界面反应性:从分子水平的观察中出现的范例

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Over the past few decades an increasing array of molecular-level analytical probes has provided new detailed insight into mineral and radionuclide interfacial reactivity in subsurface environments. This capability has not only helped change the way mineral surface reactivity is studied but also how field-scale contaminant migration problems are addressed and ultimately resolved. Here we review relatively new interfacial reactivity paradigms and assess their implications for future research directions. Specific examples include understanding the following: the role of site-to-site electron conduction at mineral surfaces and through bulk mineral phases and the effects of local chemical environment on the stability of intermediate species in oxidation-reduction reactions and the importance of mechanistic reaction pathways for defining possible reaction products and thermodynamic driving force. The discussion also includes examples of how detailed molecular/microscopic characterization of field samples has changed the way complex contaminant migration problems are conceptualized and modelled.
机译:在过去的几十年中,越来越多的分子水平分析探针提供了对地下环境中矿物和放射性核素界面反应性的新的详细了解。这种能力不仅有助于改变研究矿物表面反应性的方式,而且还有助于解决并最终解决田间规模的污染物迁移问题。在这里,我们回顾了相对较新的界面反应范式,并评估了它们对未来研究方向的影响。具体的例子包括了解以下内容:在矿物表面和通过整体矿物相的点对点电子传导的作用,以及局部化学环境对中间物种在氧化还原反应中的稳定性的影响以及机械反应途径的重要性用于定义可能的反应产物和热力学驱动力。讨论还包括一些示例,这些示例说明了野外样品的详细分子/微观表征如何改变了复杂污染物迁移问题的概念化和建模方式。

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