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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 >Preparation and thermal energy storage properties of LiNO3-KCl-NaNO3/expanded graphite composite phase change material
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Preparation and thermal energy storage properties of LiNO3-KCl-NaNO3/expanded graphite composite phase change material

机译:LINO3-KCL-NANO3 /膨胀石墨复合相变材料的制备和热储能性能

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摘要

Recent studies suggest expanded graphite (EG) can significantly enhance the thermal conductivity, stability, efficiency of phase change material (PCM). This study aims to investigate the thermal-physical properties of the LiNO3-KCl-NaNO3/expanded graphite composite PCM. The testing PCM samples were prepared using the Capillary Method with 5 wt%, 10 wt%, 15 wt%, 20 wt%, 25 wt% EG. When EG mass fraction is 25 wt%, no leakage was observed in the leakage test. The SEM image shows that the EG had intense absorption ability to the LiNO3-KCl-NaNO3 composites. The X-ray powder diffraction (XRD) comparison between the pure salt and the composite PCM suggests that no new substance produced after adding the EG into the eutectic LiNO3-KCl-NaNO3. Differential scanning calorimetry (DSC) curves of the composite PCM indicate that the latent heat was reduced dramatically when the EG and the eutectic LiNO3-KCl-NaNO3 were blended together. In the experiment, thermal conductivity and the compress density of the composite PCM show a strongly linear relationship. Also, the thermal conductivity of the PCM can be enhanced after adding the EG into the pure salt. Finally, the thermal performance of the latent heat system using the eutectic LiNO3-KCl-NaNO3 and the composite PCM were compared. Due to the high thermal conductivity, the charging rate of the system utilizing the composite PCM is much faster than the pure salt.
机译:最近的研究表明扩展石墨(例如)可以显着提高相变材料(PCM)的导热性,稳定性,效率。本研究旨在研究LINO3-KCL-NANO3 /膨胀石墨复合PCM的热物理性质。使用具有5wt%,10wt%,15wt%,20wt%,25wt%的毛细管方法制备测试PCM样品。当例如质量分数为25wt%时,在泄漏试验中没有观察到泄漏。 SEM图像显示例如对LiNO3-Kcl-NaNO 3复合材料具有浓度的吸收能力。纯盐和复合PCM之间的X射线粉末衍射(XRD)比较表明,在将EG加入到共晶LiNO3-Kcl-NaNO 3中没有产生的新物质。复合PCM的差分扫描量热法(DSC)曲线表明当EG和共晶LiNO 3-Kcl-NaNO 3混合在一起时,潜热显着降低。在实验中,热导率和复合PCM的压缩密度显示出强烈的线性关系。而且,在将EG盐加入纯盐之后,可以提高PCM的导热率。最后,比较了使用共晶LiNO3-KCl-NaNO3和复合PCM的潜热系统的热性能。由于具有高导热性,利用复合PCM的系统的充电率比纯盐快得多。

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