Development of Inorganic Impregnated Phase Change Material(PCM) in the Pores of Activated Carbon

Soyoung Baek, Y. Ghaffari, Jiyeol Bae, K. Kim
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Abstract

Objectives : Recently, energy-related research has shifted from developing alternative energy to the efficient management technology of the produced energy. As an alternative, research on phase change materials (PCMs) capable of absorbing and releasing heat as an energy medium has been conducted. This study developed a more efficient heat storage medium using activated carbon as a medium for the phase change material. At the same time, we developed a method for efficiently impregnating the phase change material into the activated carbon pores.Methods : The activated carbon used in this experiment was charcoal powder activated carbon (250-350 mesh) and granular activated carbon. The inorganic phase change materials used in the experiment was manganese nitrate hexahydrate. The method for impregnating the phase change material was pressurization method and dilution method. The heat absorption / emission capacity of the developed material was examined within the range of 10℃ to 50℃.Results and Discussion : The Scanning electron microscope (SEM) and Transmission electron microscopy energy-dispersive X-ray spectroscopy (TEM-EDX) analysis showed that the phase change material was filled in the pore of activated carbon. When the phase change material is filled by the pressurized method, the material properties of manganese nitrate hexahydrate are reflected, resulting in absorption and release of heat at each phase change temperature. As a result of experiments for the selection of the optimum solvent in the phase change material filling study using the dilution method, when ethanol was used as the solvent, the heat absorption was clearly observed even after the phase change material was loaded. As a result of selecting the optimal dilution ratio, the ratio of ethanol was determined to be 1:1 as the dilution ratio with the lowest amount of floating activated carbon. The optimal solvent removal method experimental results show that the heat absorption/release section occurred when the ethanol was removed by evaporation at 85℃ temperature.Conclusions : 1) Both the pressurization method and the dilution method are filling methods in which inorganic phase change materials can be immobilized inside activated carbon, and heat absorption and release characteristics are maintained even after loading. 2) The heat absorption release was maintained for ethanol and the optimal dilution ratio was 1:1. 3) In case of the dilute solvent removal method, the heat absorption/release capacity was maintained when the solvent was removed using only the vaporization method.
活性炭孔隙中无机浸渍相变材料(PCM)的研制
目的:近年来,能源相关研究已从开发替代能源转向生产能源的高效管理技术。作为一种替代方案,已经对能够吸收和释放热量作为能量介质的相变材料(PCM)进行了研究。本研究开发了一种更有效的储热介质,使用活性炭作为相变材料的介质。同时,我们开发了一种将相变材料有效地浸渍到活性炭孔隙中的方法。方法:本实验所用活性炭为炭粉活性炭(250-350目)和颗粒状活性炭。实验中使用的无机相变材料是六水合硝酸锰。浸渍相变材料的方法有加压法和稀释法。结果与讨论:扫描电子显微镜(SEM)和透射电子显微镜(TEM-EDX)分析表明,相变材料填充在活性炭的孔隙中。当通过加压方法填充相变材料时,六水合硝酸锰的材料性质得到了反映,导致在每个相变温度下热量的吸收和释放。作为在使用稀释法的相变材料填充研究中选择最佳溶剂的实验的结果,当使用乙醇作为溶剂时,即使在加载相变材料之后也能清楚地观察到热吸收。作为选择最佳稀释比的结果,确定乙醇的比例为1:1作为具有最低量的浮动活性炭的稀释比。最佳溶剂去除方法实验结果表明,当乙醇在85℃下蒸发去除时,会出现吸热/放热段。结论:1)加压法和稀释法都是将无机相变材料固定在活性炭内的填充方法,即使在负载后也能保持吸热和放热特性。2) 乙醇保持吸热释放,最佳稀释比为1:1。3) 在稀释溶剂去除方法的情况下,当仅使用蒸发方法去除溶剂时,保持热吸收/释放能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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