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gamma-radiation induced corrosion of copper in bentonite-water systems under anaerobic conditions

机译:γ-辐射在厌氧条件下膨润土水系统腐蚀

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In this work we have experimentally studied the impact of bentonite clay on the process of radiation-induced copper corrosion in anoxic water. The motivation for this is to further develop our understanding of radiation driven processes occurring in deep geological repositories for spent nuclear fuel where copper canisters containing the spent nuclear fuel will be embedded in compacted bentonite. Experiments on radiation-induced corrosion in the presence and absence of bentonite were performed along with experiments elucidating the impact irradiation on the Cu2+ adsorption capacity of bentonite. The experiments presented in this work show that the presence of bentonite clay has no or very little effect on the magnitude of radiation-induced corrosion of copper in anoxic aqueous systems. The absence of a protective effect similar to that observed for radiation induced dissolution of UO2 is attributed to differences in the corrosion mechanism. This provides further support for the previously proposed mechanism where the hydroxyl radical is the key radiolytic oxidant responsible for the corrosion of copper. The radiation effect on the bentonite sorption capacity of Cu2+ (reduced capacity) is in line with what has previously been reported for other cations. The reduced cation sorption capacity is partly attributed to a loss of Al-OH sites upon irradiation.
机译:在这项工作中,我们已经通过实验研究了膨润土粘土对辐射诱导氧氧水铜腐蚀过程的影响。为此的动机是进一步发展我们对在深层地质储存库中发生的辐射驱动过程的理解,其中核燃料含有废核燃料的铜罐将嵌入压实的膨润土中。在膨润土的存在和不存在下进行辐射诱导腐蚀的实验以及阐明膨润土的Cu2 +吸附能力的实验。本文提出的实验表明,对膨润土粘土的存在对氧氧含水系统中铜的辐射腐蚀的幅度没有或很小。没有与辐射诱导的UO 2溶解观察到的保护效果归因于腐蚀机制的差异。这提供了进一步支持先前提出的机制,其中羟基自由基是负责铜的腐蚀的关键辐射性氧化剂。对Cu2 +(减少容量)的膨润土吸附能力的辐射作用符合先前针对其他阳离子报告的内容。降低的阳离子吸附能力部分归因于辐射后Al-OH位点的损失。

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