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STUDY ON CORROSION OF STAINLESS STEEL IN BOILING NITRIC ACID UNDER HEAT TRANSFER CONDITIONS

机译:传热条件下沸腾硝酸中不锈钢的腐蚀研究

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In PUREX process for spent fuel reprocessing plants, nitric acid solutions are treated in many components. Particularly, heating portions in the components are severely corroded in the boiling solution under heat transfer (HT) conditions. Although corrosion behavior under the conditions has been investigated by many researchers, corrosion mechanism has not been sufficiently understood. Consequently, because of its safety, we need to study dominant factors of corrosion mechanism and to develop a method to predict corrosion progress. Surface temperature, heat flux, concentration and compositions of the solution have been previously considered as important factors for corrosion rate (CR). In this paper, authors have focused on the effects of surface temperature and heat flux on CRs of stainless steels in boiling nitric acid under HT conditions. We performed experimental study in consideration of dissolvers and concentrators. Two types of cells for HT and immersion conditions were applied for corrosion tests and the effects were compared. Test solution used was 33 mol·M~(-3) (0.033 M) vanadium added to 3 kmol ·m~(-3) (3 M) nitric acid solution. The solution was heated at boiling temperature under atmospheric pressure. Additionally, a boiling curve which was indicated the relation between heat flux and degree of superheating was investigated experimentally. Surface temperatures during corrosion tests were estimated from a boiling curve. The relationship among measured CRs, surface temperature and heat flux were studied. The results showed that CR did not depend on heat flux, but depended on surface temperature. Arrhenius plots on CRs indicated that CR was accelerated by solution boiling against non-boiling. The cause of the acceleration of CR under boiling nitric acid solution was discussed.
机译:在乏燃料后处理厂的PUREX工艺中,硝酸溶液被处理成许多成分。特别地,在热传递(HT)条件下,在沸腾溶液中,部件中的加热部分被严重腐蚀。尽管许多研究人员已经研究了在这种条件下的腐蚀行为,但对腐蚀机理还没有足够的了解。因此,由于其安全性,我们需要研究腐蚀机理的主要因素,并开发一种预测腐蚀进度的方法。先前已将表面温度,热通量,溶液的浓度和溶液组成视为腐蚀速率(CR)的重要因素。在本文中,作者集中研究了表面温度和热通量对HT条件下沸腾硝酸中不锈钢的CR的影响。我们进行了考虑溶解器和浓缩器的实验研究。将两种用于高温和浸没条件的电池用于腐蚀测试,并比较其效果。所使用的测试溶液是将33 mol·M〜(-3)(0.033 M)钒添加到3 kmol·m〜(-3)(3 M)硝酸溶液中。将该溶液在大气压下在沸腾温度下加热。另外,实验研究了表明热通量与过热度之间关系的沸腾曲线。根据沸腾曲线估算腐蚀试验过程中的表面温度。研究了测得的CRs,表面温度和热通量之间的关系。结果表明,CR不取决于热通量,而是取决于表面温度。 CR上的Arrhenius图表明,溶液沸腾对非沸腾加速了CR。讨论了沸腾硝酸溶液中CR加速的原因。

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