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REPLACEMENT INHIBITORS FOR HIGH LEVEL WASTE TANK COOLING COILS

机译:高水平废箱冷却盘管的替代抑制剂

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Sodium chromate has been an effective corrosion inhibitor for the cooling coil systems in Savannah River Site (SRS) waste tanks for over 40 years. Due to age and operating history, cooling coils occasionally fail allowing chromated water to leak into the environment.. The costs of reporting and cleaning up chromate spills became significant enough for SRS to consider alternate inhibitors. Confirmatory tests were performed to assess the effectiveness of three alternative corrosion inhibitor systems for the waste tank cooling water systems: (1) sodium molybdate (250 ppm as Mo)/sodium hydroxide (pH 10), (2) sodium molybdate (50 ppm as Mo)/sodium silicate (50 ppm as Si), and (3) sodium nitrite (500 ppm)/sodium hydroxide (0.01 M). The tests were conducted under stagnant conditions to simulate a worst-case scenario. The results showed that these inhibitors were as effective as chromate at minimizing general corrosion at solution temperatures between 30-70°C. However, the initiation of localized attack in crevice regions, in solutions containing the alternative inhibitors at 70°C, was observed. Also, for the nitrite and the molybdate systems to be effective, suitable biocide is needed. On the other hand, interval coupon tests showed that the molybdate inhibitor systems prevented significant propagation of the localized attack.
机译:铬酸钠一直是萨凡纳河现场(SRS)废气箱的冷却盘绕系统有效的腐蚀抑制因素。由于年龄和经营历史,冷却线圈偶尔会失败,使铬酸盐泄漏到环境中。报告和清洁铬酸盐溢出的成本足以让SRS考虑替代抑制剂。进行确诊试验以评估废罐冷却水系统的三种替代腐蚀抑制剂系统的有效性:(1)钼酸钠(250ppm作为Mo)/氢氧化钠(pH10),(2)钼酸钠(50ppm Mo)/硅酸钠(50ppm为Si),和(3)亚硝酸钠(500ppm)/氢氧化钠(0.01μm)。在停滞条件下进行测试以模拟最坏情况的情况。结果表明,这些抑制剂在最小化在30-70℃之间的溶液温度下最小化综合腐蚀时铬酸盐如铬酸盐一样有效。然而,观察到在含有替代抑制剂在70℃下的溶液中的局部攻击在填充区域中的启动。而且,对于亚硝酸盐和钼酸盐体系是有效的,需要合适的杀生物剂。另一方面,间隔优惠券测试表明,钼酸盐抑制剂系统阻止了局部攻击的显着传播。

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