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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Corrosion behavior and mechanism of austenitic stainless steels in a new quaternary molten salt for concentrating solar power
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Corrosion behavior and mechanism of austenitic stainless steels in a new quaternary molten salt for concentrating solar power

机译:奥氏体不锈钢在新型季熔盐中浓缩太阳能的腐蚀行为及机理

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摘要

Nitrate eutectic salts is the most widely used heat transfer heat storage medium for solar thermal power generation, but the risk of corrosion under high temperature becomes challenge to the system stability and safety. In this work, the corrosion behavior and mechanism of three austenitic stainless steels 310S, 316L and 321 were studied experimentally in a new quatemary molten salt KNO3-NaNO2-NaNO3-KCl. The composition and morphology of the corrosion products were analyzed by using the methods of XRD and SEM-EDX. The results show that the corrosion rates of three stainless steels are 0.499, 1.460 and 1.895 mu m/year, respectively. Both 316L and 321 have obvious Cr depletion region resulting in intergranular corrosion. By comparison, 310S has the best corrosion resistance in this quaternary molten salt. It is also found that Mo and Ti cannot inhibit the occurrence of intergranular corrosion, but accelerate the dissolution of sigma-phase and TiC in the quaternary molten salt. Besides, the corrosion behavior of 321 based pipe in actual service conditions for a long-time running of about 9 years. Compared with the short-term test, the surface of the metal is thoroughly corroded with the similar corrosion products and the distribution of elements.
机译:硝酸盐共晶盐是用于太阳能热发电的最广泛使用的传热蓄热介质,但高温下腐蚀的风险变得挑战,对系统稳定性和安全性变得挑战。在这项工作中,在新的稀释盐KNO3-NANO2-NANO3-KCl中实验研究了三个奥氏体不锈钢310s,316L和321的腐蚀行为和机理。通过使用XRD和SEM-EDX的方法分析腐蚀产物的组成和形态。结果表明,三根不锈钢腐蚀速率分别为0.499,1.460和1.895亩/年。 316L和321都具有明显的CR耗尽区域,导致晶间腐蚀。相比之下,310S在该季铵盐中具有最佳的耐腐蚀性。还发现Mo和Ti不能抑制晶间腐蚀的发生,但加速了季氧化盐中σ相和Tic的溶解。此外,基于321个管道在实际服务条件下的腐蚀行为为大约9年的长期运行。与短期试验相比,金属表面与相似的腐蚀产物和元素分布彻底腐蚀。

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