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Study on Thermal Properties of Bio-PCM Candidates in Comparison with Propylene Glycol and Salt Based PCM for sub-Zero Energy Storage Applications

机译:与丙二醇和基于亚零能量存储应用的丙二醇和盐的PCM相比,生物PCM候选物热性能研究

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Phase Change Materials (PCMs) provide a greater density of energy storage with a smaller temperature difference between storing and releasing heat compared to sensible heat storage methods. This paper reports results of study on bio-PCM made of vegetable oil ester and water mixtures. T-history thermal analysis method was implemented in determining thermal properties of the bio-PCM candidates. Comparison analysis was also performed in order to evaluate how favorable the investigated bio-PCM compared with conventional salt based PCM and propylene glycol. The study results showed that with right amount vegetable oil ester, the bio-PCMs can reduce freezing point and reduce or even eliminate super-cooling of water. On the other hand, salt based PCMs and propylene glycol showed high super-cooling and lower latent heat storage. This study has shown that the investigated water based bio-PCMs are strong PCM candidates for sub-zero energy storage applications.
机译:相变材料(PCM)提供更大的能量存储密度,与可明智的储热方法相比,存储和释放热之间的温差较小。本文报告了植物油酯和水混合物制成的生物PCM研究结果。在确定生物PCM候选物的热性质时实施了T历史热分析方法。还进行了比较分析,以评估研究的生物PCM与基于常规盐的PCM和丙二醇相比的有利。研究结果表明,用适量的植物油酯,Bio-PCM可以减少凝固点,减少甚至消除水的超级冷却。另一方面,基于盐的PCM和丙二醇显示出高的超冷却和更低的潜热储存。本研究表明,调查的水基生物PCMS是用于零能量存储应用的强PCM候选。

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