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The Aqueous Corrosion Behavior of Plutonium Metal and Plutonium-Gallium Alloys Exposed to Aqueous Nitrate and Chloride Solutions

机译:钚金属和钚 - 镓合金暴露于硝酸盐和氯化物溶液的水性腐蚀行为

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Previous work in this laboratory examined the polarization behavior of high-purity plutonium metal exposed to various solutions, however, the polarization behavior of plutonium-gallium alloys has not been studied. The objective of this work is to establish the effect of gallium on the electrochemical behavior of plutonium metal exposed to nitric acid, sodium nitrate, and sodium chloride solutions. Results indicated that plutonium-gallium alloys were not passive in HNO{sub}3 solutions, unlike unalloyed plutonium. The dissolution of 0.5 and 1wt% Ga alloys exposed to HNO{sub}3, and all materials exposed to NaCl, was found to be controlled by the presence of a corrosion product film. Relative oxide thickness measurements of unalloyed Pu exposed to HNO{sub}3 were obtained. Chloride was found to aggressively attack Pu and its alloys with increasing chloride concentration resulting in increased corrosion. Nitrate ions were shown to have a weak effect on the corrosion behavior of Pu, as compared to protons and chloride ions.
机译:以前的工作在该实验室中检测了暴露于各种溶液的高纯度钚金属的偏振行为,然而,尚未研究钚 - 镓合金的偏振行为。这项工作的目的是建立镓对暴露于硝酸,硝酸钠和氯化钠溶液的钚金属电化学行为的影响。结果表明,与未合金化的钚不同,钚 - 镓合金在HNO {Sub} 3溶液中没有被动。发现暴露于HNO {Sub} 3的0.5和1wt%Ga合金的溶解,以及暴露于NaCl的所有材料,通过腐蚀产物膜的存在来控制。获得了暴露于HNO {Sub} 3的非合金属PU的相对氧化物厚度测量。发现氯化物对PU及其合金具有增加的氯化物浓度,导致腐蚀增加。与质子和氯离子相比,显示硝酸根离子对PU的腐蚀行为产生薄弱的影响。

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