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Passivity of Nuclear Steam Generator Tube Alloy in Lead-Contaminated Crevice Chemistries with Different pH

机译:核蒸汽发生器管合金在不同pH值的铅污染缝隙化学中的钝性

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The impacts of lead contamination on the passivity of UNS N06690 alloy were studied using samples passivated in simulated CANDU steam generator (SG) crevice chemistries at 300°C and a pH_(300°C) range from 3.22 to 9.26. X-ray photoelectron spectroscopy (XPS) and secondary ion mass spectrometry (SIMS) analyses indicate that lead entered the anodic films but the level of lead impurities incorporated into the anodic films depended heavily on solution pH. In the alkaline chemistry, the presence of lead contamination promoted the incorporation of hydrogen and calcium. The ingress of lead hindered the dehydration during the passivation. Grazing incidence X-ray diffraction (GIXRD) analysis indicated that the lead incorporation would block the formation of spinel oxides during the passivation. Such an effect was enhanced with increasing pH and was hardly observed in the acidic chemistry. When lead contamination was absent, the anodic films were depleted of chromium in alkaline solution but were enriched with chromium in the acidic solution. The presence of lead contamination could reduce both the Cr-depletion in the alkaline chemistry and the Cr-enrichment in the acidic solution. Finally, an effort was made to outline the possible mechanisms for the lead-induced passivity degradation.
机译:使用模拟CANDU蒸汽发生器(SG)缝隙化学中在300°C和pH_(300°C)范围为3.22至9.26范围内钝化的样品研究了铅污染对UNS N06690合金钝化率的影响。 X射线光电子能谱(XPS)和二次离子质谱(SIMS)分析表明,铅进入阳极膜中,但是掺入阳极膜中的铅杂质含量很大程度上取决于溶液的pH值。在碱性化学中,铅污染的存在促进了氢和钙的结合。铅的进入阻碍了钝化过程中的脱水。掠入射X射线衍射(GIXRD)分析表明,铅的掺入将在钝化过程中阻止尖晶石氧化物的形成。随着pH值的增加,这种作用得以增强,并且在酸性化学中几乎没有观察到。当不存在铅污染时,阳极膜在碱性溶液中贫铬,而在酸性溶液中富铬。铅污染的存在既可以减少碱性化学物质中的Cr消耗,又可以减少酸性溶液中的Cr富集。最后,努力概述了铅诱导的钝化降解的可能机制。

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