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首页> 外文期刊>Applied Energy >Microencapsulation of n-octadecane phase change material with calcium carbonate shell for enhancement of thermal conductivity and serving durability: Synthesis, microstructure, and performance evaluation
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Microencapsulation of n-octadecane phase change material with calcium carbonate shell for enhancement of thermal conductivity and serving durability: Synthesis, microstructure, and performance evaluation

机译:用碳酸钙壳对正十八烷相变材料进行微囊化,以提高导热性和使用寿命:合成,微观结构和性能评估

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摘要

A sort of new phase change material (PCM) microcapsules based on n-octadecane core and calcium carbonate (CaCO_3) shell was synthesized through a self-assembly method to enhance the thermal conductivity and serving durability. Fourier transform infrared spectra confirmed that the CaCO_3 wall material was successfully fabricated upon the n-octadecane core. Scanning electric micrographs demonstrated that the n-octadecane microcapsules presented a perfect spherical morphology and a well-defined core-shell microstructure. Wide-angle X-ray scattering patterns indicated that the CaCO_3 shell was formed in the crystalline phase of vaterite while the n-octadecane core inside microcapsules still preserved good crystallinity. The microencapsulated n-octadecane also exhibited good phase-change performance and achieved a high thermal storage capability, and however, their encapsulation ratio and encapsulation efficiency were determined by the core/shell mass ratio. Therrnogravimetric analysis showed that the microencapsulation of n-octadecane improved the thermal stability by upgrading the evaporating temperature of n-octadecane inside the CaCO_3 shell. The thermal conductivity of n-octadecane microcapsules was significantly improved due to the fabrication of highly thermally conductive CaCO_3 shell, and the anti-osmosis property and serving durability were also enhanced under the protection of compact CaCO_3 shell. Owing to the easy availability and low cost of calcium carbonate, this synthetic technique indicates a high feasibility and a good prospect in industrial manufacture for the microencapsulated PCMs with inorganic shells.
机译:通过自组装法合成了一种以正十八烷核和碳酸钙(CaCO_3)壳为基础的新型相变材料(PCM)微胶囊,以提高导热性和使用寿命。傅立叶变换红外光谱证实,CaCO_3壁材料是在正十八烷核上成功制备的。扫描电子显微照片表明,正十八烷微囊呈现出完美的球形形态和明确的核-壳微结构。广角X射线散射图表明CaCO_3壳形成于球ate石的结晶相中,而微囊内部的正十八烷核仍保持良好的结晶度。微囊化的n-十八烷也表现出良好的相变性能并实现了高的蓄热能力,然而,它们的包封率和包封效率由核/壳质量比决定。热重分析表明,正十八烷的微囊化通过提高CaCO_3壳内正十八烷的蒸发温度而提高了热稳定性。由于制备了高导热的CaCO_3壳,正十八烷微胶囊的导热性得到了显着提高,并且在紧凑的CaCO_3壳的保护下,其抗渗透性和使用寿命也得到了提高。由于碳酸钙的容易获得和低成本,该合成技术表明具有无机壳的微囊PCM的高度可行性和工业生产的良好前景。

著录项

  • 来源
    《Applied Energy》 |2014年第2期|632-643|共12页
  • 作者单位

    State Key Laboratory of Organic-Inorganic Composites, School of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China;

    State Key Laboratory of Organic-Inorganic Composites, School of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China;

    State Key Laboratory of Organic-Inorganic Composites, School of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microencapsulated n-octadecane; Calcium carbonate; Microstructure; Thermal conductivity; Phase change performance;

    机译:微囊化的正十八烷;碳酸钙;微观结构导热系数;相变性能;

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