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Thermal Energy Storage Properties and Laboratory-Scale Thermoregulation Performance of Bentonite/Paraffin Composite Phase Change Material for Energy-Efficient Buildings

机译:节能建筑用膨润土/石蜡复合相变材料的储热性能和实验室规模的调温性能

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摘要

The thermal energy storage (TES) capacity of building materials can be enhanced by using phase change materials (PCM). In this work, the building composite PCM was prepared by impregnation of n-heneicosane (HE) as an organic PCM into bentonite (BNT) clay. The chemical, morphological, and thermal characterizations of the developed BNT/HE composite PCM was performed by scanning electron microscopy (SEM), Fourier transform infrared (FT-IR), differential scanning calorimetry (DSC), and thermogravimetry (TG) analysis techniques. The SEM and FT-IR results showed that the HE was well incorporated into the pores of the BNT and had good compatibility with the components of the composites. The DSC analysis results showed that the composite including 36% HE by mass had a melting temperature of 38.32°C and solidification temperature of 38.34°C; in addition, the composite also can store latent heat of 96.23 J/g and release latent heat of 94.16 J/g. The TG analysis demonstrated that the developed composite PCM had good thermal durability. The thermal cycling test confirmed that the composite had good long-term thermal reliability and chemical stability. The laboratory-scale thermoregulation performance test revealed that the BNT/HE composite PCM wallboard had the effect of decreasing the indoor temperature of the building cell for a considerable period. Use of the developed BNT/HE composite PCM as a wallboard in the construction of energy-efficient buildings will open new practice opportunities in the building industry for passive solar heating, ventilating, and air conditioning (HVAC) purposes.
机译:通过使用相变材料(PCM),可以提高建筑材料的热能存储(TES)能力。在这项工作中,通过将作为有机PCM的正二十二烷(HE)浸渍到膨润土(BNT)粘土中来制备建筑复合材料PCM。通过扫描电子显微镜(SEM),傅立叶变换红外(FT-IR),差示扫描量热法(DSC)和热重分析(TG)分析技术对已开发的BNT / HE复合PCM进行化学,形态和热学表征。 SEM和FT-IR结果表明,HE被很好地掺入到BNT的孔中,并且与复合材料的组分具有良好的相容性。 DSC分析结果表明,包含36质量%HE的复合材料的熔融温度为38.32℃,凝固温度为38.34℃。此外,该复合材料还可以存储96.23 J / g的潜热和释放94.16 J / g的潜热。 TG分析表明,开发的复合材料PCM具有良好的热耐久性。热循环测试证实该复合材料具有良好的长期热可靠性和化学稳定性。实验室规模的温度调节性能测试表明,BNT / HE复合PCM墙板在相当长的一段时间内具有降低建筑物室内温度的作用。在节能建筑中使用开发的BNT / HE复合PCM作为墙板,将为被动式太阳能采暖,通风和空调(HVAC)的目的,为建筑业提供新的实践机会。

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