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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Corrosion investigations on zircaloy-4 and titanium dissolver materials for MOX fuel dissolution in concentrated nitric acid containing fluoride ions
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Corrosion investigations on zircaloy-4 and titanium dissolver materials for MOX fuel dissolution in concentrated nitric acid containing fluoride ions

机译:Zircaloy-4和钛溶解剂材料在含氟离子浓硝酸中溶解MOX燃料时的腐蚀研究

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摘要

Aqueous reprocessing of plutonium-rich mixed oxide fuels require fluoride as a dissolution catalyst in boiling nitric acid for an effective dissolution of the spent fuel. High corrosion rates were obtained for the candidate dissolver materials zircaloy-4 (Zr-4) and commercial pure titanium (CP-Ti grade 2) in boiling 11.5 M HNO3 + 0.05 M NaF. Complexing the fluoride ions either with Al(NO3)(3) or ZrO(NO3)(2) aided in decreasing the corrosion rates of Zr-4 and CP-Ti. From the obtained corrosion rates it is concluded that CP-Ti is a better dissolver material than Zr-4 for extended service life in boiling 11.5 M HNO3 + 0.05 M NaF, when complexed with 0.15 M ZrO(NO3)(2). XPS analysis confirmed the presence of TiO2 and absence of fluoride on the surface of CP-Ti samples, indicating that effective complexation had occurred in solution leading to passivation of the metal and imparting high corrosion resistance. (C) 2016 Elsevier B.V. All rights reserved.
机译:富p混合氧化物燃料的水后处理需要氟化物作为沸腾硝酸中的溶解催化剂,以有效地溶解乏燃料。在沸腾11.5 M HNO3 + 0.05 M NaF中,候选溶解材料zircaloy-4(Zr-4)和商用纯钛(CP-Ti 2级)获得了高腐蚀速率。将氟化物离子与Al(NO3)(3)或ZrO(NO3)(2)络合有助于降低Zr-4和CP-Ti的腐蚀速率。从获得的腐蚀速率可以得出结论,与0.15 M ZrO(NO3)(2)配合使用时,CP-Ti在沸腾11.5 M HNO3 + 0.05 M NaF中的使用寿命延长,比Zr-4是更好的溶解材料。 XPS分析证实CP-Ti样品表面上存在TiO2和不存在氟化物,表明溶液中发生了有效的络合,导致金属钝化并赋予了高耐腐蚀性。 (C)2016 Elsevier B.V.保留所有权利。

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