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CORROSION OF LOW CARBON STEEL IN HIGH CONCENTRATION NITRATE SOLUTIONS

机译:低碳钢在高浓度硝酸盐溶液中的腐蚀

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High-level waste is stored at the Savannah River Site in large underground tanks constructed of carbon steel. The waste is composed of three phases: salt cake, sludge and supernate. In order to prepare feed for waste immobilization processes, the salt cake is dissolved in water for transfer to the feed preparation tank. During the salt dissolution process, a stage is achieved in which the inhibitor concentrations may not meet the requirements of the corrosion control program for the waste tanks. The addition of inhibitors may be counterproductive to the efficiency of the process and to waste minimization. Given the high nitrate concentrations in the salt cake, the primary corrosion mechanisms of concern is pitting and nitrate stress corrosion cracking (SCC). An experimental program was undertaken to assess both the corrosion susceptibility of low carbon steel to high nitrate (4.5-8.5 M) solutions with low inhibitor concentrations (<0.6 M hydroxide and <0.2 M nitrite) and the risks associated with operating at these lower inhibitor concentrations for the short period of time that salt dissolution occurs. Polarized U-bend tests on welded carbon steel samples and slow strain rate tests were performed to determine the inhibitor requirements for prevention of stress corrosion cracking. The behavior as a function of heat treatment, aggressive species (nitrate) concentration and inhibitor concentration was determined.
机译:高放废物存储在萨凡纳河工地的大型地下碳罐中。废物由三个阶段组成:盐饼,污泥和上清液。为了制备用于废物固定过程的饲料,将盐饼溶解在水中以转移到饲料制备槽中。在盐溶解过程中,达到了一个阶段,在该阶段中,抑制剂的浓度可能无法满足废液罐腐蚀控制程序的要求。抑制剂的加入可能不利于该过程的效率和废物的最小化。考虑到盐饼中的硝酸盐浓度很高,关注的主要腐蚀机理是点蚀和硝酸盐应力腐蚀开裂(SCC)。进行了一项实验计划,以评估低碳钢对抑制剂浓度低(<0.6 M氢氧化物和<0.2 M亚硝酸盐)的高硝酸盐(4.5-8.5 M)溶液的腐蚀敏感性以及在这些较低抑制剂下操作的相关风险盐溶解在短时间内的浓度。进行了对焊接碳钢样品的极化U形弯曲试验和慢应变速率试验,以确定抑制剂对防止应力腐蚀开裂的要求。确定了作为热处理,侵蚀性物种(硝酸盐)浓度和抑制剂浓度的函数的行为。

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