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首页> 外文期刊>Journal of Energy Storage >Characterisation of promising phase change materials for high temperature thermal energy storage
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Characterisation of promising phase change materials for high temperature thermal energy storage

机译:高温热能储存有前途变化材料的表征

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In the current study two phase change materials have been initially characterised as potential high temperature phase change materials (PCM) for thermal energy storage. Thermophysical properties such as melting/freezing point, latent heat, and specific heat capacity were determined using differential scanning calorimetry (DSC). Results from the uncycled PCMs show a melting point of 541.98 +/- 0.15 degrees C and a latent heat of 164.96 +/- 3.83 J/g for the lower temperature PCM (BaCl2-KCl-NaCl), and 706.92 +/- 0.34 degrees C and 133.14 +/- 3.55 J/g for the higher temperature PCM (K2CO3-Na2CO3). This largely compares well with the melting points and latent heats provided in literature. Theoretical predictions of other properties such as solid and liquid density, liquid thermal conductivity, and viscosity were also estimated. Lastly, samples of the PCM were also cycled up to 200 times with the melting point and latent heat measured. From the cycling results, the melting point and latent heat of samples cycled 200 times show almost no change. The measured melting point and latent heat after 200 cycles was found to be 541.30 +/- 0.16 degrees C and 161.64 +/- 2.60 J/g, respectively, for the low temperature PCM.Similarly, the higher temperature PCM showed good cycling stability after 200 cycles with a melting point and latent heat of 704.62 +/- 0.29 degrees C and 135.42 +/- 3.59 J/g, respectively. Overall, it was found that the PCMs investigated in the current study show promising results to be considered as high temperature energy storage materials.
机译:在目前的研究中,两相变化材料最初是用于热能储存的潜在高温相变材料(PCM)。使用差示扫描量热法(DSC)测定熔化/冰点,潜热和比热容等热物理性质。 Uncycled PCM的结果显示熔点为541.98 +/- 0.15℃,较低温度PCM(Bacl2-Kcl-NaCl)的潜热为164.96 +/- 3.83J / g,706.92 +/- 0.34度较高温度PCM(K2CO3-NA2CO3)的C和133.14 +/- 3.55 J / g。这在很大程度上与文献中提供的熔点和潜热相比很好。还估计了其他性质的理论预测,如固体和液体密度,液体导热率和粘度。最后,PCM的样品也循环高达200次,熔点和测量潜热。从循环结果中,样品的熔点和潜热循环200次显示几乎没有变化。发现200个循环后的测量熔点和潜热分别为541.30 +/- 0.16℃和161.64 +/- 2.60J / g,用于低温PCM.MIMILALLY,温度较高的PCM显示出良好的循环稳定性200次循环,熔点和潜热量为704.62 +/- 0.29c和135.42 +/- 3.59 j / g。总体而言,发现本研究中调查的PCMS表现出有希望的结果被认为是高温储能材料。

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