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Exothermic properties of expanded graphite-calcium chloride composites for thermal storage

机译:膨胀石墨 - 氯化钙复合材料的放热性能进行热储存

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摘要

In this study, expanded graphite (EG)-calcium chloride composites were prepared, and their thermal storage and exothermic properties were studied. EG was obtained by heating expandable graphite (200 mesh, moisture 0.5%) in a muffle furnace at 340 degrees C for 180 min. The EG-calcium chloride composite was prepared by mixing well and grinding an amount of calcium chloride hexahydrate (CaCl2 center dot 6H(2)O) with EG into powder in a mortar. The results show that parameters such as the proportion of EG, the dehydration temperature and the duration of dehydration of the composite affect the exothermic properties of the composite material distinctly, and the optimal exothermic performance of the composite is significantly better than that of pure calcium chloride. The exothermic value of the composite reaches the highest value of 1598.52 J/g at a mass ratio of calcium chloride to EG of 5:1 and a dehydrating temperature of 250 degrees C for 2 h.
机译:在该研究中,制备了膨胀石墨(例如) - 氯化钙复合材料,研究了它们的热储存和放热性能。 例如,通过将Muffle炉中的可膨胀石墨(200目,水分0.5%)在340℃下加热180分钟获得。 通过孔混合并研磨氯化钙六水合物(CaCl2中心点6H(2)O),在砂浆中磨削氯化钙六水合物(CaCl 2中心点6h(2)),制备EG-氯化钙复合材料。 结果表明,例如,脱水温度和复合材料脱水持续时间的参数明显影响复合材料的放热性能,复合材料的最佳放热性能明显优于氯化钙的最佳放热性能 。 复合材料的放热值以氯化钙的质量比为例如5:1的质量比为250℃,2小时的脱水温度达到最高值为1598.52J / g。

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