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Direct Experimental Evidence for Differing Reactivity Alterations of Minerals following Irradiation: The Case of Calcite and Quartz

机译:矿物在辐照后不同反应性变化的直接实验证据:方解石和石英的情况

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摘要

Concrete, used in the construction of nuclear power plants (NPPs), may be exposed to radiation emanating from the reactor core. Until recently, concrete has been assumed immune to radiation exposure. Direct evidence acquired on Ar+-ion irradiated calcite and quartz indicates, on the contrary, that, such minerals, which constitute aggregates in concrete, may be significantly altered by irradiation. More specifically, while quartz undergoes disordering of its atomic structure resulting in a near complete lack of periodicity, calcite only experiences random rotations, and distortions of its carbonate groups. As a result, irradiated quartz shows a reduction in density of around 15%, and an increase in chemical reactivity, described by its dissolution rate, similar to a glassy silica. Calcite however, shows little change in dissolution rate - although its density noted to reduce by ≈9%. These differences are correlated with the nature of bonds in these minerals, i.e., being dominantly ionic or covalent, and the rigidity of the mineral’s atomic network that is characterized by the number of topological constraints (nc) that are imposed on the atoms in the network. The outcomes have major implications on the durability of concrete structural elements formed with calcite or quartz bearing aggregates in nuclear power plants.
机译:建造核电站(NPP)的混凝土可能会受到反应堆堆芯辐射的影响。直到最近,人们还认为混凝土不受辐射的影响。相反,在Ar + 离子辐照的方解石和石英上获得的直接证据表明,构成混凝土骨料的此类矿物可能会被辐照显着改变。更具体地说,尽管石英的原子结构发生紊乱,导致几乎完全缺乏周期性,方解石仅经历随机旋转和碳酸根基团变形。结果,与玻璃状二氧化硅类似,辐照石英显示出密度降低约15%,化学反应性提高(由其溶解速率表示)。尽管方解石的密度降低了约9%,但其溶解速率几乎没有变化。这些差异与这些矿物中键的性质(即主要为离子性或共价性)以及矿物原子网络的刚性相关,该刚性的特征在于对网络中原子施加的拓扑约束(nc)的数量。 。结果对核电厂中由方解石或石英骨料形成的混凝土结构元件的耐久性具有重大影响。

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