石膏基复合相变储能材料的研究进展
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1.郑州大学 生态与环境学院;2.国家钙镁磷复合肥技术研究推广中心;3.河南省减污降碳协同工程技术研究中心;4.郑州大学 化工学院;5.中节能工程技术研究院有限公司

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TB34

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国家自然科学基金项目(21576246);国家重点研发计划项目(2021YFD17009);国家重点研发计划项目(2016YFD0300800)


Research progress of gypsum-based composite phase change energy storage materials
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1.School of Ecology and Environment, Zhengzhou University;2.National Centre of Research & Popularization on Calcium, Magnesium, Phosphate and Compound Fertilizer Technology;3.Research Centre of Engineering and Technology for Synergetic Control of Environmental Pollution and Carbon Emissions of Henan Province;4.School of Chemical Engineering, Zhengzhou University;5.CECEP Engineering Technology Research Institute Co.,Ltd.

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    摘要:

    建筑能耗、工业能耗和交通能耗是能源消耗的主要方式。其中,建筑能耗约占能源消耗的40%左右,建筑能耗的持续上升会增加碳排放和加速化石能源的消耗,因此提升建筑材料的保温节能性能逐渐成为建筑材料领域的研究热点。储热技术不仅可以降低建筑能耗,还可以减少环境污染。相变储能材料具有优异的储放热能力,是实现热能储存以及温度控制的重要技术手段,在建筑节能领域有广阔的应用前景。该文主要综述了石膏基复合相变储能材料的研究进展,根据石膏基相变材料的不同,分析归纳了石膏基有机相变材料和石膏基复合相变材料,介绍了浸渍法、多孔材料吸附法、微胶囊法等制备石膏基复合相变储能材料的方法和机理,以及影响石膏基相变储能材料的因素。最后,展望了石膏基相变储能材料的研究方向。

    Abstract:

    Building energy consumption, industrial energy consumption and traffic energy consumption are the main ways of energy consumption. Among them, building energy consumption accounts for about 40 % of energy consumption. The continuous rise of building energy consumption will increase carbon emissions and accelerate the consumption of fossil energy. Therefore, improving the thermal insulation and energy saving performance of building materials has gradually become a research hotspot in the field of building materials. Heat storage technology can not only reduce building energy consumption, but also reduce environmental pollution. Phase change energy storage material has excellent heat storage and release capacity. It is an important technical means to realize thermal energy storage and temperature control, and has broad application prospects in the field of building energy conservation. In this paper, the research progress of gypsum-based composite phase change energy storage materials is reviewed. According to the difference of gypsum-based phase change materials, gypsum-based organic phase change materials and gypsum-based composite phase change materials are analyzed and summarized. The methods and mechanisms of preparing gypsum-based composite phase change energy storage materials, such as impregnation method, porous material adsorption method and microcapsule method, and the factors affecting gypsum-based phase change energy storage materials are introduced. Finally, the research direction of gypsum-based phase change energy storage materials is prospected.

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汤建伟,王 续,刘 咏,王保明,游韶玮,刘鹏飞.石膏基复合相变储能材料的研究进展[J].精细化工,2024,41(7):

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  • 收稿日期:2023-08-16
  • 最后修改日期:2023-10-11
  • 录用日期:2023-09-19
  • 在线发布日期: 2024-07-11
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