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Multielectrode array sensors to enable long-duration corrosion monitoring and control of concentrating solar power systems

机译:多电极阵列传感器,以实现集中太阳能系统的长时间腐蚀监测和控制

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摘要

Molten mixtures of MgCl2-KCl-NaCl are promising heat transfer fluid (HTF) candidates for the next generation of concentrating solar power systems (Gen3 CSP), because of their low cost, high decomposition temperature, and favorable heat transfer characteristics. However, if the chemistry of the salts is not properly controlled, molten chlorides can cause corrosion of high-temperature metal alloys, such as Inconel (R), in CSP systems. Here we demonstrate a corrosion monitoring system that can be used to monitor the health of the structural alloys over long durations. The monitoring system includes a multielectrode array voltammetry sensor that measures the redox potential of molten MgCl2-KCl-NaCl mixture as well as the presence of corrosion products and impurities. The sensors have been successfully operated in static molten salt environments for long durations, and are capable of detecting corrosion products, such as Cr2+ and Fe2+, quantitatively at low concentrations (i.e., approximately 100 ppm) with less than 4% error.
机译:MgCl2-KCl-NaCl熔融混合物因其成本低、分解温度高和良好的传热特性,是下一代聚光太阳能发电系统(Gen3-CSP)的理想传热流体。然而,如果盐的化学成分控制不当,熔融氯化物会导致CSP系统中的高温金属合金(如铬镍铁合金(R))发生腐蚀。在这里,我们展示了一个腐蚀监测系统,可用于长期监测结构合金的健康状况。监控系统包括一个多电极阵列伏安传感器,用于测量熔融MgCl2-KCl-NaCl混合物的氧化还原电位以及腐蚀产物和杂质的存在。传感器已在静态熔盐环境中成功运行了很长时间,并且能够在低浓度(即约100 ppm)下定量检测腐蚀产物,如Cr2+和Fe2+,误差小于4%。

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