多功能相变微胶囊的储热性能与抗电离辐射研究
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1.中国地质大学武汉工程学院;2.中建三局第二建设工程有限责任公司;3.中国地质大学(武汉)工程学院

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TB332

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Preparation and Performance Study of New Multifunctional Phase Change Microcapsules: Thermal Energy Storage and Ionizing Radiation Resistance
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1.Faculty of Engineering,China University of Geosciences,Wuhan;2.China Construction third Bureau second construction engineering CO,LTD

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    摘要:

    本研究旨在开发一种适用于建筑材料领域的新型多功能相变微胶囊(MPCM),其同时具有储热和抗电离辐射能力。基于自组装法制备MPCM,并通过在其外壳中引入高原子序数的钡元素,赋予了MPCM额外的抗电离辐射性能。本研究对MPCM的化学结构、相变性能、热稳定性及其在水泥基材中的辐射屏蔽效果进行了全面评估。实验结果显示,所制备的MPCM呈椭球状或球霰状,其核壳结构通过物理连接实现,有效保持了相变芯材的储热密度。MPCM的起始相变温度和潜热分别为1.22°C和122.18J/g,且具有良好的热稳定性,在经历80次热循环后,其相变温度保持不变,平均潜热仅略微下降6.55 J/g。进一步地,将MPCM参加到水泥浆中。当MPCM掺入水泥浆中,得到的MCP试块在低光子能量下显示出显著增强的辐射屏蔽效果。MCP10%试块的线性衰减系数比参照组增加了42.2%。这表明MPCM的加入显著提升了水泥材料的抗电离辐射能力,为建筑材料的性能改善开辟了新途径。综上所述,本研究不仅成功制备出具有优异储热和抗辐射性能的MPCM,还扩展了其在建筑材料领域的应用潜力,为制造环境适应性更强、能效更高的建筑材料提供了新的思路。

    Abstract:

    This study aims to develop a new type of multifunctional phase change microcapsules (MPCM) suitable for the field of building materials, featuring both heat storage and radiation resistance capabilities. MPCM was prepared using a self-assembly method, and the introduction of barium with a high atomic number into its shell endowed MPCM with additional anti-ionizing radiation properties. This study comprehensively evaluated the chemical structure, phase change properties, thermal stability, and radiation shielding effectiveness of MPCM in cementitious materials. Experimental results showed that the prepared MPCM exhibited an ovoid or spheroidal shape, and its core-shell structure was physically interconnected, effectively maintaining the heat storage density of the phase change core material. The phase change temperature and latent heat of MPCM were 4.79°C and 101.13J/g, respectively, demonstrating good thermal stability. After 80 thermal cycles, the phase change temperature remained unchanged, and the latent heat decreased by only 5.23 J/g. Furthermore, MPCM was added to cement slurry. When incorporated into the cement slurry, the resulting MCP blocks exhibited significantly enhanced radiation shielding effects at lower photon energies. The linear attenuation coefficient of MCP10% blocks increased by 42.2% compared to the control group. This indicates that the addition of MPCM significantly enhanced the anti-ionizing radiation capability of cement materials, paving a new path for improving the performance of building materials. In summary, this study not only successfully prepared MPCM with excellent heat storage and radiation resistance properties but also expanded its potential applications in the field of building materials, providing a new approach to manufacturing building materials with enhanced environmental adaptability and energy efficiency.

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阙川林,刘天乐,杨国坤,孟征,雷刚.多功能相变微胶囊的储热性能与抗电离辐射研究[J].精细化工,2024,41(12):

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  • 收稿日期:2023-12-10
  • 最后修改日期:2024-03-08
  • 录用日期:2024-02-07
  • 在线发布日期: 2024-12-10
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