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 PEG/SiO2 composites as shape-stabilized phase change materials for thermal energy storage
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Preparation and characterization of PEG/SiO2 composites as shape-stabilized phase change materials for thermal energy storage

机译:PEG / SiO2复合材料作为形状稳定的相变材料用于热能存储的制备和表征

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A novel sol-gel method was adopted to prepare polyethylene glycol/silicon dioxide shape-stabilized phase change materials (PEG/SiO_2 ss-PCMs) with various PEG mass fractions. The gelatinization was carried out by adjusting temperature instead of adding coagulant. In PEG/SiO_2 composites, PEG acted as the phase change material and silica gel served as the supporting material to keep the stable shape of the composites during the phase transition. Various characterization techniques were employed to investigate the structures and properties of the composites. Results showed that the composites exhibited the stable core-shell structures by impregnating PEG into multi-mesoporous silica gel; they could remain in the solid form even if the temperature exceeded the melting point of PEG. It was physical adsorption between PEG and silica gel, and the crystal structure of PEG component was unaffected, so that PEG in the composites retained an excellent phase change performance. The enthalpies of the composites varied from 63.4 J/g to 128.4 J/g (PEG mass fractions: 50-80%), which was proportional to PEG content. The thermal conductivities were increased to 0.558 W m~(-1) K~(-1) by addition of graphite in mass fraction of 2.7%. Moreover, the composites presented excellent thermal stabilities and possessed a broad applicable temperature range, and they were suitable for thermal energy storage applications in building envelopes.
机译:采用新颖的溶胶-凝胶法制备了具有各种PEG质量分数的聚乙二醇/二氧化硅形状稳定相变材料(PEG / SiO_2 ss-PCMs)。通过调节温度而不是添加凝结剂来进行糊化。在PEG / SiO_2复合材料中,PEG充当相变材料,硅胶充当支撑材料,以在相变过程中保持复合材料的稳定形状。采用了各种表征技术来研究复合材料的结构和性能。结果表明,通过将PEG浸渍到多介孔硅胶中,复合材料具有稳定的核-壳结构。即使温度超过PEG的熔点,它们也可能保持固体形式。它是PEG与硅胶之间的物理吸附,并且PEG组分的晶体结构不受影响,因此复合物中的PEG保留了优异的相变性能。复合物的焓从63.4J / g变化至128.4J / g(PEG质量分数:50-80%),其与PEG含量成比例。通过加入质量分数为2.7%的石墨将导热系数提高到0.558 W m〜(-1)K〜(-1)。此外,该复合材料具有出色的热稳定性,并具有广泛的适用温度范围,适用于建筑围护结构中的热能存储应用。

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