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Carbon Steel Corrosion in Anoxic Alkaline Solution

机译:碳钢在缺氧碱性溶液中的腐蚀

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Carbon steel is being considered as a candidate canister material for high level waste disposal in underground geologic repository systems where anoxic to reducing conditions dominate after the thermal period. For example, the supercontainer concept in Belgium's proposed Boom Clay repository concept comprises a carbon steel overpack containing the waste and an outer, stainless steel liner that defines an annulus containing a cementitious material. The outer surface of the carbon steel overpack is expected to be in contact with concrete porewater with pH near 12.5 persisting for thousands of years. In this study, both literature reviews and independent experimental studies were conducted to investigate carbon steel corrosion in anoxic alkaline water and the effects of chloride, sulfide, and thiosulfate on passive dissolution. Experimental tests have confirmed low uniform corrosion rates in an alkaline anoxic environment with pH near 12 and have detected hydrogen produced from the passive dissolution process. Depassivation effects were least in chloride, greatest in sulfide, and thiosulfate was in the middle on carbon steel passivity in this anoxic alkaline environment.
机译:碳钢被认为是地下地质处置库系统中高放废物处理的候选罐材料,在热期之后,厌氧还原条件占主导地位。例如,比利时提出的“动臂粘土”储存库概念中的超级容器概念包括一个包含废物的碳钢外包装和一个外部不锈钢衬里,该衬里定义了一个包含水泥质材料的环形空间。碳钢外包装的外表面预计将与pH值接近12.5的混凝土孔隙水接触数千年。在这项研究中,进行了文献综述和独立实验研究,以研究碳钢在缺氧碱性水中的腐蚀以及氯化物,硫化物和硫代硫酸盐对被动溶解的影响。实验测试已经证实,在pH接近12的碱性缺氧环境中,均匀腐蚀速率较低,并且检测到了被动溶解过程中产生的氢气。在这种缺氧碱性环境中,钝化作用在氯化物中最小,在硫化物中最大,而硫代硫酸盐在碳钢钝化中居中。

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