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High temperature corrosion of stainless steel AISI 316L in molten nitrate salts based thermofluids for concentration solar plants

机译:基于熔融硝酸盐盐的熔融硝酸盐盐的高温腐蚀,浓缩太阳能厂的热流体

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摘要

With the recent boom of environmentally friendly energies, the demand for materials capable of resisting certain working conditions demanded by these processes arises, for example, the obtaining of energy from sunlight, in which the Thermal storage is vital during the operation of the plant. In the present work, the reaction of AISI 316L steel in contact with molten nitrate salts (Ca (NO3)2 + NaNO3 + KNO3 and LiNO3 + KNO3 + NaNO3) was evaluated, gravimetric tests were carried out with Two types of ternary salts of nitrates at a temperature of 600?°C, evaluating the gain of mass in the steel, in turn, were carried out metallographic studies, in order to evaluate the damage of the microstructure. By means of SEM and optical micrographs, the morphology of the layer and the damage caused to the steel was observed. The surface where the greater aggressiveness of damage by the ternary salt in the steel was evidenced is the surface of the steel exposed to the lithium salt. The results of DRX yielded Fe0.612Ni0.388 and CrNi, as the main steel corrosion products, demonstrating that the salt fused with the calcium component is less harmful to the steel used in this project.
机译:随着最近环保能量的繁荣,例如,可以产生能够抵抗这些过程所需的某些工作条件的材料的需求,例如,从阳光下获得能量,在植物的操作期间热存储在植物的操作期间至关重要。在本作工作中,评价AISI 316L钢与熔融硝酸盐盐接触的反应(Ca(NO 3)2 +纳米3 + KNO3和LINO3 + KNO3 + NANO3),进行重量试验,用两种类型的硝酸盐进行在600Ω°C的温度下,反过来评估钢中质量的增益,进行金相研究,以评估微观结构的损伤。通过SEM和光学显微照片,观察到层的形态和对钢造成的损坏。通过钢中的三元盐造成损坏的更大侵蚀性的表面是暴露于锂盐的钢的表面。 DRX的结果产生Fe0.612Ni0.388和CRNI,作为主钢腐蚀产品,表明与钙组分融合的盐对该项目中使用的钢较小。

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