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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >CORROSION ELECTROCHEMISTRY OF FUEL ELEMENT MATERIALS IN POND STORAGE CONDITIONS
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CORROSION ELECTROCHEMISTRY OF FUEL ELEMENT MATERIALS IN POND STORAGE CONDITIONS

机译:腐蚀电化学燃料元件材料在池塘储存条件

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摘要

Magnox clad nuclear fuel elements are subject to aqueous storage following discharge from reactor.The integrity of the clad is imperative in avoiding undesirable release of soluble fission products.The corrosion performance of the material is important and pond chemistry is closely controlled to maintain passivity and prevent clad penetration.In order to allow optimization of operating chemistry and hence minimize corrosion,the aqueous corrosion behaviour of commercial magnesium alloy Magnox A180 has been studied with the use of modern electrochemical techniques.The conventional methods employed in historical corrosion investigations,such as weight loss and hydrogen evolution,are often insensitive to certain mechanisms and require significant time-scales.Here the use of electrochemical noise and impedance spectroscopy alongside DC polarization has allowed the study of general and localized corrosion,notably clad pitting,with greatly enhanced sensitivity and reduced time-scales.Magnox corrosion has proved to be a complex and dynamic system and the formation of a passive layer and propensity to subsequent breakdown are dictated by various environmental factors,including pH,anion concentration and inhibition.This has demanded the development and application of novel techniques and real time observations of pitting initiation and propagation have been made.Empirical models have been formulated from experimental data allowing prediction of the onset of localized corrosion and the application of finite element techniques for deterministic prediction is proposed.
机译:镁诺克斯合金复合核燃料元素出院后水存储反应堆。在避免不良释放可溶性裂变产物。材料化学是重要和水塘密切保持被动控制防止复合渗透。化学,因此优化操作减少腐蚀,水腐蚀商业镁合金镁诺克斯合金的行为A180研究与现代的使用电化学技术。方法采用历史腐蚀调查,如减肥和氢进化,通常是不确定的机制和需要大量时间尺度。和阻抗光谱学极化使一般的研究局部腐蚀,尤其是穿着麻点极大地增强了灵敏度和减少时间尺度。复杂和动态系统的形成被动层和随后的倾向故障是由不同的环境因素,包括pH、离子浓度和抑制。小说中的应用技术和实时起始和观察传播。从实验数据可以被制定预测的局部腐蚀的发生和有限元的应用技术提出了确定的预测。

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