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Corrosion studies of stainless steel 304 L in nitric acid in the presence of uranyl nitrate: effect of temperature and nitric acid concentration

机译:硝酸铀酰存在下不锈钢304 L在硝酸中的腐蚀研究:温度和硝酸浓度的影响

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In order to better understand the role of uranium on the corrosion behavior of stainless in aqueous nuclear fuel reprocessing and decontamination operations, 304L stainless steel coupons were treated with nitric acid media at 45 ℃ and 90 ℃ in the presence of 0.3 M of uranyl nitrate. The impact of time, temperature, nitric acid concentration and uranyl nitrate concentration has been studied over a 183 days period and corrosion rates determined. After 183 days, corrosion rates (μm y~(−1)) at 90 ℃ are: 33.7 ± 3.4 for 8 M HNO_3 with [U] = 0 M; 39.7 ± 0.1 for 8 M HNO_3 with [U] = 0.3 M; 5.3 ± 0.1 for 3.5 M HNO_3 with [U] = 0 M and 5.9 ± 0.2 for 3.5 M HNO_3 with [U] = 0.3 M. After 183 days, the corrosion rates at 45 ℃ are all below 2 μm y~(−1) for the nitric acid concentration and uranyl nitrate concentration studied. Analysis of the data indicate that the corrosion domain remains passive, no uranium uptake onto stainless steel has been observed but only an increase of corrosion rate with temperature (major effect) and nitric acid concentration (minor effect) were reported. When both temperature and nitric acid concentration increased and drive the system into a transpassive corrosion domain, the presence of uranium promote the increase of corrosion rate after 3 months. Analyses of the coupon by scanning electron microscopy indicates that at the first stage low homogeneous dissolution of the steel occurs; intergranular corrosion appears at 10 days and finally grain loss is observed after 6 months treatment.
机译:为了更好地理解铀在水性核燃料后处理和去污操作中对不锈钢腐蚀行为的作用,在存在0.3 M硝酸铀酰的情况下,在45℃和90℃下用硝酸介质处理了304L不锈钢试样。在183天的时间内研究了时间,温度,硝酸浓度和硝酸铀酰浓度的影响,并确定了腐蚀速率。 183天后,在90℃时的腐蚀速率(μmy〜(-1))为:对于[U] = 0 M的8 M HNO_3,腐蚀速率为33.7±3.4。对于8 M HNO_3,[U] = 0.3 M,为39.7±0.1;对于[U] = 0 M的3.5 M HNO_3,为5.3±0.1;对于[U] = 0.3 M的3.5 M HNO_3,为5.9±0.2。183天后,在45℃下的腐蚀速率均低于2μmy〜(−1 )进行硝酸浓度和硝酸铀酰浓度的研究。数据分析表明,腐蚀域仍然是被动的,没有观察到铀吸收到不锈钢上,但是仅报道了腐蚀速率随温度(主要影响)和硝酸浓度(次要影响)而增加。当温度和硝酸浓度均升高并驱使系统进入超钝化腐蚀域时,铀的存在会在3个月后促进腐蚀速率的提高。通过扫描电子显微镜对试样的分析表明,在第一阶段,钢发生了低均匀溶解。 10天后出现晶间腐蚀,处理6个月后最终观察到晶粒损失。

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