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The Effect of Nickel Alloy Corrosion Under Cathodic Protection Inside High Temperature Molten Salt Systems

机译:高温熔盐体系中阴极保护对镍合金腐蚀的影响

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One way to potentially reduce the costs of concentrated solar power (CSP) systems is to operate the central receiver at high temperatures which allow for more efficient thermodynamic power conversion cycles. Molten salts are one potential heat transfer fluid that can operate efficiently at these temperatures, but their use will introduce other technological challenges, such as corrosion reactions. Cathodic protection may mitigate corrosion of metal surfaces by shifting the potential of the alloy below its oxidation potential. The behavior of molten salt (CSP) systems under cathodic protection can be obtained by developing a 3-D model. A simplified model was designed for a thermosiphon vessel. This thermosiphon vessel exposed the alloy coupons to isothermal and non-isothermal conditions expected in concentrated solar power (CSP) plants. The model compared the corrosion rates for the cases with and without cathodic protection. Results were in good agreement with experimental values with less than 5% error.
机译:潜在降低集中式太阳能(CSP)系统成本的一种方法是在较高的温度下操作中央接收器,从而允许更有效的热力学功率转换周期。熔融盐是一种可以在这些温度下有效运行的潜在传热流体,但其使用将带来其他技术挑战,例如腐蚀反应。阴极保护可通过将合金电势移至其氧化电势以下来减轻金属表面的腐蚀。可以通过建立3-D模型来获得在阴极保护下的熔融盐(CSP)系统的行为。为热虹吸管设计了简化模型。该热虹吸管将合金试样暴露在集中太阳能发电(CSP)厂所预期的等温和非等温条件下。该模型比较了有和没有阴极保护的情况下的腐蚀速率。结果与实验值非常吻合,误差小于5%。

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