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国家自然科学基金(21106151)

作品数:4 被引量:75H指数:4
相关作者:叶锋丁玉龙杨军葛志伟秦月更多>>
相关机构:中国科学院过程工程研究所中国科学院大学中国地质大学(北京)更多>>
发文基金:国家自然科学基金中国科学院重点部署项目国家科技支撑计划更多>>
相关领域:一般工业技术动力工程及工程热物理化学工程更多>>

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硅藻土基复合相变储热材料研究现状被引量:7
2013年
硅藻土是一种含量丰富的非金属矿,具有较高的孔隙率、良好的表面结构和热物理性能,因而可作为复合储热材料的载体。本文综述了复合储热材料的种类和制备工艺,并介绍了硅藻土的结构、性能和以硅藻土为载体的复合相变储热材料的研究及应用现状。
冷光辉秦月叶锋于翔丁玉龙
关键词:硅藻土储热材料相变材料
Multi-walled carbon nanotubes added to Na_2CO_3/MgO composites for thermal energy storage被引量:13
2014年
Na_2CO_3/MgO composites with added multi-walled carbon nanotubes(MWCNTs) were prepared and tested as phase change materials(PCMs) for thermal energy storage.Na_2CO_3/MgO composite PCMs were prepared and their chemical compatibility and thermal stability were studied.MWCNTs introduced with Na_2CO_3/MgO composite PCMs were also investigated and scanning electron microscopy(SEM) characterization was used to demonstrate the uniform dispersion of MWCNTs in Na2C03/MgO composite PCMs.The composites with added MWCNTs still display good thermal stability with mass losses lower than 5%.Introducing MWCNTs into composite Na_2CO_3/MgO PCMs by material formation/calcination significantly enhances the thermal conductivity of the composite PCMs.The thermal conductivity of the composite PCMs was found to increase with an increase in the weight fraction of the added MWCNTs and an increase in the testing temperature.This study may present a promising way to prepare high temperature phase change materials with superior properties such as improved thermal stability.
Feng YeZhiwei GeYulong DingJun Yang
关键词:镁复合材料热能储存碳纳米管复合材料NA2CO3
中高温储热材料的研究现状与展望被引量:44
2012年
开发中高温储热材料及其制备方法是储热技术发展的关键之一。本文结合中高温储热材料的分类、特点、应用及存在的问题对中高温储热材料的研究进展进行了综述,主要包括显热储热材料、热化学储热材料以及潜热储热材料。探讨了复合结构储热材料及其制备工艺,进一步介绍了其最新研究进展,并对中高温储热材料的下一步研究进行了展望,提出开发高性能纳微复合结构储热材料是未来研究的重点。
葛志伟叶锋叶锋杨军杨军
关键词:中高温储热材料复合结构
Carbonate-salt-based composite materials for medium- and high-temperature thermal energy storage被引量:19
2014年
This paper discusses composite materials based on inorganic salts for medium- and high-temperature thermal energy storage application.The composites consist of a phase change material(PCM),a ceramic material,and a high thermal conductivity material.The ceramic material forms a microstructural skeleton for encapsulation of the PCM and structural stability of the composites;the high thermal conductivity material enhances the overall thermal conductivity of the composites.Using a eutectic salt of lithium and sodium carbonates as the PCM,magnesium oxide as the ceramic skeleton,and either graphite flakes or carbon nanotubes as the thermal conductivity enhancer,we produced composites with good physical and chemical stability and high thermal conductivity.We found that the wettability of the molten salt on the ceramic and carbon materials significantly affects the microstructure of the composites.
Zhiwei GeFeng YeHui CaoGuanghui LengYue QinYulong Ding
关键词:热能储存碳酸盐
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