新一代光热电站用熔盐:有前途的熔盐的选择及熔盐对合金的腐蚀研究

Wenjin Ding, A. Bonk, T. Bauer
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引用次数: 51

摘要

与商业硝酸盐混合物相比,熔融氯化物盐具有高稳定性极限(bbb800°C)和低价格,是聚光太阳能(CSP)工厂中很有前途的高温热能储存(TES)和传热流体(HTF)材料。然而,结构材料在与氯盐接触时的严重腐蚀是限制其在高温下应用的最关键挑战之一。首先,本文介绍了单一氯化物和氯化物混合物的性质(熔点、蒸汽压、热容量、吸湿性)和大规模价格,以便在下一代CSP中选择合适的熔融氯化物盐混合物。然后,基于我们之前和目前的工作,讨论了金属合金在熔融氯化物盐中的热腐蚀行为和机制,以及相应的腐蚀缓解策略,以开发下一代CSP中熔融氯化物的商业应用技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molten chloride salts for next generation CSP plants: Selection of promising chloride salts & study on corrosion of alloys in molten chloride salts
Molten chloride salts are promising high-temperature thermal energy storage (TES) and heat transfer fluid (HTF) materials in concentrated solar power (CSP) plants due to their high stability limits (>800°C) but low prices, compared to the commercial nitrate salt mixtures. However, severe corrosion of structural materials in contact with chloride salts is one of the most critical challenges to limit their applications at elevated temperatures. First, this work presents the properties (melting point, vapor pressure, heat capacity, hygroscopy) and large-scale prices of single chlorides and chloride mixtures for selecting the suitable molten chloride salt mixtures in next generation CSP. Then, based on our previous and current work, it discusses hot corrosion behaviors and mechanisms of metallic alloys in molten chloride salts, as well as corresponding corrosion mitigation strategies to develop the technology towards commercial applications of molten chlorides in next generation CSP.
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