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Characteristics of phase-change materials containing oxide nano-additives for thermal storage

机译:含氧化物纳米添加剂的相变材料的储热特性

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摘要

In this study, the authors report the production of nanocomposite-enhanced phase-change materials (NEPCMs) using the direct-synthesis method by mixing paraffin with alumina (Al2O3), titania (TiO2), silica (SiO2), and zinc oxide (ZnO) as the experimental samples. Al2O3, TiO2, SiO2, and ZnO were dispersed into three concentrations of 1.0, 2.0, and 3.0 wt.%. Through heat conduction and differential scanning calorimeter experiments to evaluate the effects of varying concentrations of the nano-additives on the heat conduction performance and thermal storage characteristics of NEPCMs, their feasibility for use in thermal storage was determined. The experimental results demonstrate that TiO2 is more effective than the other additives in enhancing both the heat conduction and thermal storage performance of paraffin for most of the experimental parameters. Furthermore, TiO2 reduces the melting onset temperature and increases the solidification onset temperature of paraffin. This allows the phase-change heat to be applicable to a wider temperature range, and the highest decreased ratio of phase-change heat is only 0.46%, compared to that of paraffin. Therefore, this study demonstrates that TiO2, added to paraffin to form NEPCMs, has significant potential for enhancing the thermal storage characteristics of paraffin.
机译:在这项研究中,作者报告了通过直接合成方法将石蜡与氧化铝(Al2O3),二氧化钛(TiO2),二氧化硅(SiO2)和氧化锌(ZnO)混合制备纳米复合增强相变材料(NEPCM) )作为实验样品。将Al 2 O 3,TiO 2,SiO 2和ZnO分散成1.0、2.0和3.0重量%的三种浓度。通过热传导和差示扫描量热仪实验,评估了不同浓度的纳米添加剂对NEPCMs的导热性能和储热特性的影响,确定了其在储热中的可行性。实验结果表明,在大多数实验参数下,TiO2在增强石蜡的导热和储热性能方面比其他添加剂更有效。此外,TiO 2降低了熔融起始温度并提高了石蜡的固化起始温度。这使得相变热可应用于更宽的温度范围,与石蜡相比,相变热的最高降低比率仅为0.46%。因此,这项研究表明,添加到石蜡中形成NEPCM的TiO2具有增强石蜡储热特性的巨大潜力。

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