4.7 Article

An innovative modified calcium chloride hexahydrate-based composite phase change material for thermal energy storage and indoor temperature regulation

Journal

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SPRINGERNATURE
DOI: 10.1007/s42114-023-00654-z

Keywords

Expanded graphite; Calcium chloride hexahydrate; Phase change materials; Temperature regulation of buildings

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In this study, a modified calcium chloride hexahydrate (CaCl2 center dot 6H(2)O) phase change material (PCM) was prepared with potassium chloride (KCl) as the temperature regulator and strontium hydroxide octahydrate (Sr(OH)(2)center dot 8H(2)O) as the nucleating agent. A shape-stabilized composite PCM suitable for space thermal regulation was prepared by immersing 15 wt% expanded graphite (EG) into 85 wt% modified PCM, with a phase transition temperature of 26.25 degrees C, phase change enthalpy of 153.03 J/g, and a thermal conductivity of 4.3893 W/(mK). The composite PCM showed little change in phase change temperature and only 5.95% loss in enthalpy after 500 heating-cooling cycles. The temperature regulation performance of the composite PCM was evaluated in a test chamber prepared with polyvinyl chloride (PVC) board, maintaining indoor temperature at 24.5-27.5 degrees C for 180 to 652 minutes. This prepared composite PCM can be applied effectively in temperature management of buildings.
Hydrated salt phase change materials (PCMs) can play an important role in the temperature regulation of buildings by storing and releasing latent heat. However, hydrated salt PCMs are affected by phase separation, supercooling, and leakage, which greatly limit their application. In this study, an innovative modified calcium chloride hexahydrate -(CaCl2 center dot 6H(2)O) PCM was prepared with potassium chloride (KCl) as the temperature regulator and strontium hydroxide octahydrate (Sr(OH)(2)center dot 8H(2)O) as the nucleating agent. Subsequently, 15 wt% expanded graphite (EG) was immersed into 85 wt% modified PCM to prepare form-stable composite PCM, which is suitable for space thermal regulation with a phase transition temperature of 26.25 degrees C, phase change enthalpy of 153.03 J/g and a thermal conductivity of 4.3893 W/(mK). After 500 heating-cooling cycles, the phase change temperature changed little, and enthalpy lost only 5.95%. The test chamber prepared with a composite PCM and polyvinyl chloride (PVC) board was studied to evaluate its temperature regulation performance. In the heating and cooling process, the indoor temperature is maintained at 24.5-27.5 degrees C for 180 to 652 min. Therefore, the prepared composite PCM can have a good application in the temperature management of buildings.

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