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Preparation, characterization and optimization of micro-encapsulated phase change materials used for thermal storage and temperature regulation depends on response surface methodology

机译:用于热储存和温度调节的微包封相变材料的制备,表征和优化取决于响应面方法

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摘要

The micro-encapsulated phase change materials could be used for thermal storage and temperature regulation, which solved the energy mismatch in space and time, and the utilization rate of energy has been greatly improved. Thus, recently, the researches of energy storage materials have attracted wide attention. During this study, based on our previous research results, the micro-encapsulated phase change material was designed and prepared through in sit polymerization. However, contrary to earlier reports, the preparation of micro-encapsulated phase change materials was optimized by Design Expert 8.0.6 depends on Response Surface Methodology (RSM), the interaction between variables were studied, the advantage of response surface methodology is that during the process of optimizing experimental conditions, the continuous analysis of all levels of the experiment can be achieved. The chemical structure, thermal properties, particle size and micro-morphology of micro-encapsulated phase change materials Micro-P were characterized. As a result, it was demonstrated that the energy storage and temperature regulation of Micro-P were obviously improved, the latent heat of Micro-P was increased to 103.2 J/g, and the encapsulation efficiency was improved from 67.10 to 80.15%, the increase is 19.45%. Simultaneously, the Micro-P has excellent thermal stability and thermal reliability, the thermal weight loss below 200 degrees C is less than 1.0%. Moreover, the Micro-P has a spherical structure with middle diameter 6.0 +/- 0.1 mu m and smooth surface. The highlight of this study is that the Micro-P was prepared and optimized by Design Expert 8.0.6 depends on RSM.
机译:微包覆的相变材料可用于热储存和温度调节,该温度调节,该温度调节,解决空间和时间的能量不匹配,并且能量的利用率得到了大大提高。因此,最近,储能材料的研究引起了广泛的关注。在本研究期间,基于我们以前的研究结果,通过静入聚合设计并制备微包封的相变材料。然而,与早期的报道相反,通过设计专家8.0.6优化了微包封相变材料的制备取决于响应面方法(RSM),研究了变量之间的相互作用,响应表面方法的优点是在此期间优化实验条件的过程,可以实现各级实验的连续分析。特征在于微包覆相变材料的化学结构,热性质,粒度和微观形态。结果表明,微p的能量储存和温度调节明显改善,微p的潜热增加至103.2J / g,封装效率从67.10%提高到80.15%,增加是19.45%。同时,微P具有优异的热稳定性和热可靠性,低于200℃的热量损失小于1.0%。此外,微型P具有中间直径为6.0 +/-0.1μm和光滑表面的球形结构。本研究的亮点是通过设计专家8.0.6制备和优化Micro-P取决于RSM。

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