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 testing device for in-situ corrosion characterization in operational molten salts storage tanks: A516 Gr70 carbon steel performance under molten salts exposure
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Corrosion testing device for in-situ corrosion characterization in operational molten salts storage tanks: A516 Gr70 carbon steel performance under molten salts exposure

机译:用于运行中的熔盐储罐的现场腐蚀表征的腐蚀测试设备:暴露于熔盐下的A516 Gr70碳钢性能

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Concentrated solar power (CSP) generation is becoming a very important player within the renewable energy sector thanks to increased introduction of these facilities into the conventional electricity market. CSP plants become dispatchable when integrating thermal energy storage (TES) systems which allow electricity production at any time of the year. Sensible TES using nitrate salts mixtures as storage fluid are the most extended arrangement for commercial CSP facilities. In addition to storage time, dimensions, thermal-mechanical requirements, among others, corrosion compatibility between high temperature nitrate salts, and structural materials is a key factor to take into consideration for the final storage system design. Many scientific contributions have been developed regarding metallic alloys corrosion performance in nitrate salts at laboratory scale. Accordingly, lack of technical background is identified about nitrates corrosion in relevant operation conditions. Therefore, a corrosion testing device (LID) was designed to evaluate corrosion behavior of structural materials inside high temperature nitrate salts storage tanks in operation. Furthermore, A516 Gr70 carbon steel was evaluated at different exposures times by using the CID in the TES-PS10 pilot plant. Results reported within this study show the feasibility of the LW to be used at commercial scale allowing corrosion preventive maintenance practices and materials selection optimization. Moreover, A516 Gr70 carbon steel displayed an excellent corrosion performance after nitrate salts exposure being recommended for long time service under continuous and intermittent exposure to nitrate salts. In addition to low corrosion rates, carbon steel generated protective and well adhered iron oxide layers without significant localized phenomena. Finally, negligible susceptibility to crevice and stress corrosion cracking (SCC) phenomena is showed by carbon steel under test conditions. (C) 2016 Elsevier B.V. All rights reserved.
机译:得益于将这些设施更多地引入传统电力市场,集中式太阳能发电(CSP)成为可再生能源领域的一个非常重要的角色。当集成热能存储(TES)系统时,CSP工厂就可以调度,该系统可以一年中的任何时间发电。使用硝酸盐混合物作为存储液的明智TES是商用CSP设施中最广泛的布置。除了存储时间,尺寸,热机械要求之外,高温硝酸盐与结构材料之间的腐蚀相容性也是最终存储系统设计要考虑的关键因素。在实验室规模上,关于金属合金在硝酸盐中的腐蚀性能已经做出了许多科学贡献。因此,发现在相关操作条件下缺乏关于硝酸盐腐蚀的技术背景。因此,设计了腐蚀测试装置(LID)来评估运行中的高温硝酸盐储存罐内结构材料的腐蚀行为。此外,通过在TES-PS10中试工厂中使用CID在不同的暴露时间对A516 Gr70碳钢进行了评估。这项研究报告的结果表明,LW可以在商业规模上使用,从而可以实现防腐蚀维护实践和优化材料选择。此外,建议将A516 Gr70碳钢在连续或间歇性暴露于硝酸盐下后,长期使用硝酸盐后,仍具有出色的腐蚀性能。除低腐蚀速率外,碳钢还产生了保护性和粘附性良好的氧化铁层,而没有明显的局部现象。最后,在测试条件下,碳钢对缝隙和应力腐蚀开裂(SCC)现象的敏感性可忽略不计。 (C)2016 Elsevier B.V.保留所有权利。

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