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Thermal characterization of HITEC molten salt for energy storage in solar linear concentrated technology

机译:太阳能线性浓缩技术中用于储能的HITEC熔盐的热表征

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The enhancement in the storage systems developed by solar thermoelectric centrals brings to this renewable energy a considerable efficiency increase. This improvement propitiates the design of storage fluids with lower melting point and higher thermal stability such as molten salt mixtures. This research has broadly studied the HITEC mixture composed by 53 mass% KNO3 + 40 mass% NaNO2 + 7 mass% NaNO3, with the aim to improve the existing solar salt used as energy storage fluid in CSP plants and focus the thermal properties obtained for application in solar linear concentrated technology. HITEC molten salt shows better physicochemical properties than the binary solar salt (60 % NaNO3 + 40 % KNO3), due to its lower melting point which can improve the work temperature range in commercial solar plants. The tested properties studied by differential scanning calorimeter and thermogravimetric analyser were melting points, heat capacities and thermal stability, mainly. This proposed mixture could be used as heat transfer fluid in solar linear concentrated technology extending the work range temperature between 130 and 550 A degrees C. Results conclude that the main challenge in nitrite salts lies in the need to protect the sample above 350 A degrees C with inert gas, to prevent oxidation of nitrite by oxygen.
机译:由太阳能热电中心开发的存储系统的增强使这种可再生能源的效率大大提高。该改进促进了具有较低熔点和较高热稳定性的诸如熔盐混合物的存储流体的设计。这项研究广泛地研究了由53质量%的KNO3 + 40质量%的NaNO2 + 7质量%的NaNO3组成的HITEC混合物,目的是改善现有的用作CSP工厂中储能流体的太阳盐,并着重于所获得的热学性能在太阳能线性集中技术中。 HITEC熔盐比二元太阳能盐(60%NaNO3 + 40%KNO3)具有更好的理化性能,因为它的熔点较低,可以改善商业太阳能工厂的工作温度范围。差示扫描量热仪和热重分析仪研究的性能主要是熔点,热容量和热稳定性。拟议的混合物可以用作太阳能线性浓缩技术中的传热流体,将工作温度范围扩展到130至550 A摄氏度之间。结果得出结论,亚硝酸盐的主要挑战在于需要保护高于350 A摄氏度的样品用惰性气体,以防止亚硝酸盐被氧气氧化。

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