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Development of Composite PCMs by Incorporation of Paraffin into Various Building Materials

机译:通过将石蜡掺入各种建筑材料中的复合PCM的开发

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In this research, we focused on the development of composite phase-change materials (CPCMs) by incorporation of a paraffin through vacuum impregnation in widely used building materials (Kaolin and ground granulated blast-furnace slag (GGBS)). The composite PCMs were characterized using environmental scanning electron microscopy (ESEM), Fourier transform infrared spectroscopy (FT-IR), differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) techniques. Moreover, thermal performance of cement paste composite PCM panels was evaluated using a self-designed heating system. Test results showed that the maximum percentage of paraffin retained by Kaolin and GGBS was found to be 18% and 9%, respectively. FT-IR results show that CPCMs are chemically compatible. The phase-change temperatures of CPCMs were in the human comfort zone, and they possessed considerable latent-heat storage capacity. TGA results showed that CPCMs are thermally stable, and they did not show any sign of degradation below 150 °C. From thermal cycling tests, it was revealed that the CPCMs are thermally reliable. Thermal performance tests showed that in comparison to the control room model, the room models prepared with CPCMs reduced both the temperature fluctuations and maximum indoor center temperature. Therefore, the prepared CPCMs have some potential in reducing peak loads in buildings when applied to building facade.
机译:在本研究中,我们通过广泛使用的建筑材料(高岭土和地面粒状高炉渣(GGBS))通过真空浸渍掺入石蜡进行复合相变材料(CPCMS)的开发。使用环境扫描电子显微镜(ESEM),傅里叶变换红外光谱(FT-IR),差示扫描量热法(DSC)和热重分析(TGA)技术,表征复合PCM。此外,使用自行设计的加热系统评估了水泥膏复合PCM面板的热性能。试验结果表明,高岭土和基金保留的石蜡的最大百分比分别为18%和9%。 FT-IR结果表明,CPCMS是化学兼容的。 CPCMS的相变温度在人类舒适区中,它们具有相当大的潜热存储容量。 TGA结果表明,CPCMS热稳定,它们没有显示出150°C低于150°C的任何降解迹象。从热循环试验中,揭示了CPCMS热可靠。热性能测试表明,与控制室模型相比,使用CPCMS制备的房间模型可降低温度波动和最大室内中心温度。因此,当应用于建筑立面时,所准备的CPCMS在建筑物中减少峰值负荷的可能性。

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