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TERNARY MOLTEN SALT HEAT TRANSFER FLUIDS FOR ENERGY APPLICATIONS

机译:用于能量应用的三元熔盐传热流体

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One of the major impediments of current energy applications is the availability of an economical and reliable heat transfer fluid. Such applications include concentrated solar power, gas processing, petrochemicals, nuclear, and other high-temperature processes. Organic heat transfer fluids currently in use have limitations approaching 390°C, and other salt-based fluids have rather high freezing temperatures. Ternary nitrate salts have the potential to operate at high temperatures while maintaining low freezing temperatures. Mixtures of various concentrations of LiNO_3-NaNO_3-KNO_3 salts and their properties have been investigated. For various LiNO_3-NaNO_3-KNO_3 compositions, specific heat, latent heat, and viscosity are reported at various temperatures. Phase diagrams have also been predicted for the LiNO_3-NaNO_3-KNO_3, CsNO_3-NaNO_3-KNO_3, and CsNO_3-LiNO_3-KNO_3 systems using mathematical modeling and the results are encouraging. The results presented in this work are expected to make a significant impact on the development of economical and practical ternary nitrate mixtures in energy applications.
机译:目前能源应用的主要障碍之一是经济和可靠的传热液的可用性。这些应用包括集中的太阳能,天然气加工,石化,核等高温过程。目前使用的有机传热流体具有接近390°C的限制,并且其他盐的流体具有相当高的冻结温度。三元硝酸盐盐有可能在高温下运行,同时保持低冻结温度。研究了各种浓度的LinO_3-纳米_3-KNO_3盐及其性质的混合物。对于各种LINO_3-NANO_3-KNO_3组合物,在各种温度下报道了比热,潜热和粘度。使用数学建模的LINO_3-NANO_3-KNO_3,CSNO_3-NANO_3-KNO_3和CSNO_3-LINO_3-KNO_3系统还预测了相图,结果令人鼓舞。这项工作提出的结果有望对能源应用中经济实用的三元硝酸盐混合物的发展产生重大影响。

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