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Granular phase changing composites for thermal energy storage

机译:储热颗粒相变复合材料

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Granular phase changing composites for thermal energy storage were made of granular porous materials and organic phase changing materials by means of vacuum impregnation method. Experimental studies on the vacuum impregnation method, phase changing behavior, chemical compatibility between porous materials and phase changing materials, and sealing performance of coating materials arrived in the following conclusions. Firstly, the vacuum impregnation method is effective in loading porous materials with phase changing materials; and its setup is simple, cheap and easy of scale-up. Secondly, organic phase changing materials (including fatty acids and their derivatives, and paraffin) and inorganic porous materials (including expanded clay, expanded fly ash and expanded perlite) are suitable raw materials for the phase changing composites with respect to chemical compatibility, large thermal energy storage density, and feasibility of large scale processing. Thirdly, thickened latex is the best choice of coating materials for the porous material granules, whose sealing performance is about 40-fold higher than that of normal cement paste and about sevenfold higher than that of the best polymer modified cement paste in this paper.
机译:通过真空浸渍法,由粒状多孔材料和有机相变材料制成用于储热的颗粒相变复合材料。对真空浸渍法,相变行为,多孔材料与相变材料之间的化学相容性以及涂料的密封性能进行实验研究得出以下结论。首先,真空浸渍法可以有效地在多孔材料中填充相变材料。它的设置简单,便宜且易于扩展。其次,有机相变材料(包括脂肪酸及其衍生物和石蜡)和无机多孔材料(包括膨胀粘土,膨胀粉煤灰和膨胀珍珠岩)在化学相容性,高热稳定性方面是相变复合材料的合适原料。储能密度大,加工可行性大。第三,增稠的乳胶是多孔材料颗粒的最佳包覆材料选择,其密封性能比普通水泥浆高40倍,比最佳聚合物改性水泥浆高7倍。

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