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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >The sodium nitrate-urea binary mixture as a phase change material for medium temperature thermal energy storage. Part I: Determination of the phase diagram and main thermal properties
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The sodium nitrate-urea binary mixture as a phase change material for medium temperature thermal energy storage. Part I: Determination of the phase diagram and main thermal properties

机译:硝酸钠-脲二元混合物作为相变材料,用于中温热能存储。第一部分:相图和主要热特性的确定

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This research studies a binary mixture composed of sodium nitrate and urea for use as a phase change material in latent thermal energy storage systems between 75 and 90 degrees C. This range of temperatures is suitable for heating and domestic hot water applications, such as solar thermal systems and cogeneration devices. The work is divided into two parts. In this Part I, the phase diagram of the system was experimentally determined via DSC, the synthetic visual method and X-ray diffraction. A eutectic composition was found at 71.25% (w/w) urea and 28.75% (w/w) sodium nitrate. The main thermal properties and density of this composition were studied in detail to evaluate its potential as a PCM. The results showed a melting temperature of 85 degrees C and a melting enthalpy of 172 J/g. These properties are suitable for the intended purpose. Currently, the mixture presents a market price below 1(sic)/kg, which is highly competitive. In Part II, the water uptake of the material was evaluated to gain knowledge of its hygroscopic behavior. In addition, because urea undergoes thermal degradation upon heating, a preliminary accelerated thermal cycling test was performed to study the thermal reliability of the mixture. According to the results, the eutectic mixture formed by sodium nitrate and urea has potential for use as a PCM in the intended temperature range. Further research focused on thermal degradation over longer periods of use is encouraged to establish whether the material has a proper lifespan for actual thermal energy storage applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究研究了由硝酸钠和尿素组成的二元混合物,用作75至90摄氏度之间的潜热能量存储系统中的相变材料。此温度范围适用于加热和家用热水应用,例如太阳能系统和热电联产设备。这项工作分为两个部分。在第一部分中,通过DSC,合成视觉方法和X射线衍射实验确定了系统的相图。发现共熔组合物的尿素含量为71.25%(w / w),硝酸钠含量为28.75%(w / w)。详细研究了该组合物的主要热性能和密度,以评估其作为PCM的潜力。结果表明,熔融温度为85℃,熔融焓为172J / g。这些性质适合于预期目的。目前,混合物的市场价格低于1(sic)/ kg,这具有很高的竞争力。在第二部分中,对材料的吸水率进行了评估,以了解其吸湿性能。另外,由于尿素在加热时会发生热降解,因此进行了初步的加速热循环试验以研究混合物的热可靠性。根据该结果,由硝酸钠和尿素形成的低共熔混合物具有在预期温度范围内用作PCM的潜力。鼓励针对长期使用中的热降解进行进一步研究,以确定该材料对于实际的热能存储应用是否具有适当的使用寿命。 (C)2016 Elsevier B.V.保留所有权利。

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