甘露糖醇相变储热材料的制备及传热性能分析
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1.塔里木大学化学化工学院;2.塔里木大学化学化工学院,新疆生产建设兵团兴新职业技术学院能源与动力学院

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大学生创新创业项目(2023062),有机无机复合材料国家重点实验室开放课题(oic-202001011)


Preparation of d-mannitol phase change heat storage material and analysis of heat transfer performance
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1.College of Chemistry and Chemical Engineering,Tarim University,Alar;2.College of Chemistry and Chemical Engineering,Tarim University,Alar,.Bingtuan Xingxin Vocational and technical College, College of Energy and Power, Tiemen guan,

Fund Project:

Innovative Entrepreneurship Program for University Students(2023062),Open Subjects of State Key Laboratory of Organic and Inorganic Composite Materials (oic-202001011)

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    摘要:

    甘露糖醇(Man)作为中温区、高焓值相变材料具有良好的应用前景,但易渗漏、传热性差仍是制约因素。设计良好的多孔碳载体将对糖醇的相变过程有改善作用。本研究利用氧化石墨烯(GO)为支撑骨架,以分散和促进ZIF的原位生长,通过高温煅烧构筑高导热多碳载体(PC),实现对甘露糖醇形状稳定性相变材料(PC/Man)热性能的调节。PC/Man的吸热焓达185.3 J/g,加热至180 ℃后,30 min内几乎无渗漏,导热率较甘露糖醇提高了36.86 %。为进一步验证在应用过程的传热效果,采用Fluent软件模拟了管式换热器中储热材料的凝固过程,分析了温度和液相率随时间的变化关系,计算结果与实验分析均证明PC/Man良好的热传导性。本研究所制备ss-PCM具有吸放热迅速,储热量大的特点,在中温领域具有良好的应用前景。

    Abstract:

    Mannitol (Man) as a medium-temperature and high-enthalpy phase change material has promising applications, but issues such as leakage and poor heat transfer remain limiting factors. Well-designed porous carbon carriers will have an improved effect on the phase transition process of sugar alcohols. This study utilized graphene oxide (GO) as a support framework to disperse and promote the in-situ growth of ZIF, and through high-temperature calcination, constructed a high thermal conductivity network porous carbon carrier (PC), achieving the modulation of the thermal properties of mannitol shape-stable phase change material (PC/Man). The heat of absorption of PC/Man reached 185.3 J/g, and after heating to 180 °C, there was almost no leakage within 30 minutes, and the thermal conductivity was increased by 36.86 % compared to mannitol. To further verify the heat transfer effect in the application process, Fluent software was used to simulate the solidification process of the heat storage material in a tubular heat exchanger, analyzing the relationship between temperature and liquid phase rate with time. The calculated results, along with experimental analysis, confirmed the excellent thermal conductivity of PC/Man. The ss-PCM prepared in this study has the characteristics of rapid heat absorption and release, with a large heat storage capacity, showing promising applications in the medium-temperature field.

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陈琰,王金书,白金刚,郭智文,吕喜风.甘露糖醇相变储热材料的制备及传热性能分析[J].精细化工,2024,41(12):

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  • 收稿日期:2023-10-30
  • 最后修改日期:2024-01-16
  • 录用日期:2023-12-25
  • 在线发布日期: 2024-12-10
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