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首页> 外文期刊>Applied Energy >One-step fabrication of fatty acidsano copper/polyester shape-stable composite phase change material for thermal energy management and storage
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One-step fabrication of fatty acidsano copper/polyester shape-stable composite phase change material for thermal energy management and storage

机译:一步法制备脂肪酸/纳米铜/聚酯形状稳定的复合相变材料,用于热能管理和存储

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In this contribution, for the first time, fatty acidsano copper/polyester composites were prepared by a facile and one-step route through simultaneous in situ formation of copper nanoparticles and direct absorption of fatty acids to polyester fibers for thermal energy management and thermal conductivity improvement. This eliminates synthesis of copper particles in the separate processing and also other processing such as electrospinning of fibers with using solvents and micro and nano encapsulation as well as shortening the time and processing steps. Two eutectics of fatty acids including myristic/lauric acid and myristic/stearic acid were used as phase change materials, ascorbic acid as a clean reducing agent for in situ synthesis of copper nanoparticles and polyester fibers as supporting material. The thermal behavior of the samples was investigated by using differential scanning calorimetry and thermogravimetric analysis. Based on experimental results, the prepared composites provided a proper and wide temperature range of phase transitions from 29.4–34.2 to 35.7–52.7 °C with corresponding enthalpies of 40.3–53.9 and 41.9–55.0 J/g, respectively, that is appropriate for using in diverse applications. The incorporation of copper nanoparticles into eutectic of phase change materials leads to a 77.5% increase in thermal conductivity for the sample treated with lowest copper content. In addition, the treated samples indicated good thermal stability and reliability even after 100 melting and solidifying cycles. Finally, the mentioned method can be utilized for producing shape-stable composite phase change material with appropriate phase transition ranges for low temperature energy storage/retrieval systems.
机译:在这一贡献中,脂肪酸/纳米铜/聚酯复合材料首次通过一种简便而一步的方法制备,即同时原位形成铜纳米颗粒,并将脂肪酸直接吸收到聚酯纤维中以进行热能管理和热能转化。电导率改善。这消除了在单独的工艺以及其他工艺(例如,使用溶剂对纤维进行静电纺丝以及微和纳米封装)中铜粒子的合成,并缩短了时间和加工步骤。脂肪酸的共晶体包括肉豆蔻酸/​​月桂酸和肉豆蔻酸/​​硬脂酸作为相变材料,抗坏血酸作为清洁还原剂用于铜纳米颗粒的原位合成,聚酯纤维作为支撑材料。通过差示扫描量热法和热重分析法研究了样品的热行为。根据实验结果,所制备的复合材料提供了合适的且较宽的相变温度范围,从29.4–34.2到35.7–52.7°C,相应的焓分别为40.3–53.9和41.9–55.0 J / g,适合使用在各种应用中。将铜纳米颗粒掺入到相变材料的低共熔物中会使用最低铜含量处理的样品的热导率提高77.5%。另外,经处理的样品即使在100次熔化和固化循环后仍显示出良好的热稳定性和可靠性。最后,所提及的方法可以用于生产形状稳定的复合相变材料,该材料具有适当的相变范围,适用于低温能量存储/检索系统。

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