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EFFICIENCY OF INHIBITORS OF CHLORIDE-INDUCED CREVICE CORROSION OF A Ni-Cr-Mo ALLOY

机译:Ni-Cr-Mo合金的氯化物引起的腐蚀腐蚀抑制剂的效率

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Alloy 22 was considered as a candidate for the engineered barrier of the USA repository and it is still considered among the candidates in the scoping work for the argentine repository system. Chloride ion is the only species present in groundwater that is able to promote crevice corrosion, if severe conditions such as high temperatures and a tight crevice are present. Other species present in groundwater have shown to be inhibitors or non-detrimental species. The objective of this work was to evaluate the efficiency of different species potentially found in groundwaters as possible inhibitors of crevice corrosion of alloy 22. A modification of the THE method (ASTM G 192) was used for determining the crevice corrosion repassivation potential of alloy 22 in chloride plus inhibitor solutions at 90°C. The species tested as inhibitors were nitrate, sulfate, carbonate, bicarbonate, chromate and molybdate anions. The critical ratio for the complete inhibition ranged from 0.2 to 2. Nitrate was the most efficient among tested inhibitors. The carbonate was the only species of the carbonate / bicarbonate / carbonic acid equilibrium able to inhibit the chloride-induced crevice corrosion of alloy 22. Sulfate, chromate and molybdate were moderately goods inhibitors.
机译:合金22被认为是美国储存库工程屏障的候选物,并且仍被视为阿根廷储存库系统范围界定工作的候选物。如果存在诸如高温和紧密缝隙之类的严酷条件,则氯离子是地下水中存在的唯一能够促进缝隙腐蚀的物质。地下水中存在的其他物种已证明是抑制剂或非有害物种。这项工作的目的是评估地下水中可能存在的不同物种作为合金22缝隙腐蚀抑制剂的效率。对THE方法(ASTM G 192)的改进用于确定合金22的缝隙腐蚀再钝化潜力在90°C的氯化物加抑制剂溶液中溶解。作为抑制剂测试的物质是硝酸根,硫酸根,碳酸根,碳酸氢根,铬酸根和钼酸根阴离子。完全抑制的临界比为0.2至2。在测试的抑制剂中,硝酸盐是最有效的。碳酸盐是碳酸盐/碳酸氢盐/碳酸平衡中唯一能够抑制氯化物诱导的合金22缝隙腐蚀的物质。硫酸盐,铬酸盐和钼酸盐是中等程度的抑制剂。

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