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Accelerated Thermal Cycling Test of Microencapsulated Paraffin Wax/Polyaniline Made by Simple Preparation Method for Solar Thermal Energy Storage

机译:简易储热法制备微胶囊石蜡/聚苯胺的加速热循环试验

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摘要

Microencapsulated paraffin wax/polyaniline was prepared using a simple in situ polymerization technique, and its performance characteristics were investigated. Weight losses of samples were determined by Thermal Gravimetry Analysis (TGA). The microencapsulated samples with 23% and 49% paraffin showed less decomposition after 330 °C than with higher percentage of paraffin. These samples were then subjected to a thermal cycling test. Thermal properties of microencapsulated paraffin wax were evaluated by Differential Scanning Calorimeter (DSC). Structure stability and compatibility of core and coating materials were also tested by Fourier transform infrared spectrophotometer (FTIR), and the surface morphology of the samples are shown by Field Emission Scanning Electron Microscopy (FESEM). It has been found that the microencapsulated paraffin waxes show little change in the latent heat of fusion and melting temperature after one thousand thermal recycles. Besides, the chemical characteristics and structural profile remained constant after one thousand thermal cycling tests. Therefore, microencapsulated paraffin wax/polyaniline is a stable material that can be used for thermal energy storage systems.
机译:采用简单的原位聚合技术制备了微囊化石蜡/聚苯胺,并对其性能进行了研究。样品的重量损失通过热重分析(TGA)确定。具有23%和49%的石蜡的微囊化样品在330°C后的分解较少,而石蜡的百分比更高。然后将这些样品进行热循环测试。通过差示扫描量热仪(DSC)评估微囊化石蜡的热性能。还通过傅立叶变换红外分光光度计(FTIR)测试了芯和涂层材料的结构稳定性和相容性,并通过场发射扫描电子显微镜(FESEM)显示了样品的表面形态。已经发现,经过一千次热循环后,微囊化石蜡的熔化潜热和熔化温度几乎没有变化。此外,经过一千次热循环测试,化学特性和结构轮廓保持不变。因此,微囊化石蜡/聚苯胺是一种稳定的材料,可用于热能存储系统。

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