Abstract Preparation and characterization of an inorganic magnesium chloride/nitrate/graphite composite for low temperature energy storage
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 characterization of an inorganic magnesium chloride/nitrate/graphite composite for low temperature energy storage
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Preparation and characterization of an inorganic magnesium chloride/nitrate/graphite composite for low temperature energy storage

机译:低温储存无机氯化镁/硝酸盐/石墨复合材料的制备及表征

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AbstractIn this study, an inorganic mixture of 40wt% MgCl2·6H2O and 60wt% Mg(NO3)2·6H2O was impregnated into two types of the expanded graphite (EG): EG flakes and EG matrix. Different methods of preparation usually used in the organic composite preparation, such as direct blending, vacuum impregnation, ultrasonic impregnation and immersion were applied in this work. Considering the samples with EG matrix, it can be concluded that the optimal result of the encapsulation and ΔH ratio can be reached with the experimental time of 1, 3 and 4h using the vacuum, ultrasound and immersion methods, respectively. Moreover, the percentage of encapsulation increases with the experimental time and with the EG percentage for the EG matrix and for the EG flakes, respectively. Concerning the supercooling phenomena, the results show that the presence of EG reduces the difference between fusion and crystallization temperature for up to 65%, acting as а nucleating agent. The resulting composite samples (CPCM) were proved to have good latent heat and a significant reduction of the supercooling effect, which eliminates the need to use nucleating agents, that are essential for pure PCM of 40wt% MgCl2·6H2O and 60wt% Mg(NO3)2·6H2O. Moreover, using EG suppresses significantly the melting time which indicates the heat transfer enhance of the mixture. This circumstance could allow to empower the utilization of the mentioned mixture i
机译:<![cdata [ 抽象 在本研究中,无机混合物40wt%MgCl 2 ·6h 2 o和60​​wt%mg(no 3 2 ·6H 2 O浸渍成两种类型的膨胀石墨(例如):例如薄片和例如矩阵。在该工作中施加不同在有机复合制剂中使用的制备方法,例如直接混合,真空浸渍,超声浸渍和浸渍。考虑到具有例如矩阵的样品,可以得出结论,使用真空,超声波和浸入方法的实验时间可以达到封装和ΔH比的最佳结果。此外,封装的百分比随着实验时间和例如矩阵的百分比和例如薄片的百分比增加。关于过冷现象,结果表明,例如降低熔融和结晶温度之间的差异,可达65%,作用作成核剂。得到了所得复合样品(CPCM)具有良好的潜热和显着降低过冷效应,这消除了使用核酸剂的需要,这对于40wt%MgCl 2 ·6H 2 O和60wt%mg(no 3 2 ·6h 2 o。此外,使用例如抑制显着抑制的熔化时间,所述熔化时间表示热传递增强混合物。这种情况可以允许赋予提到的混合物的利用

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