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Microstructure and Characterization of Capric-stearic Acid/Modified Expanded Vermiculite Thermal Storage Composites 被引量:1
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作者 刘凤利 朱教群 +4 位作者 LIU Junhua MA Baoguo ZHOU Weibing LI Ruguang QIN Weigao 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第2期296-304,共9页
In order to improve the thermal storage capacity of expanded vermiculite(EV) based formstable composite PCM(FS-PCM) via organic modification of EV, first, EV was modified with a sodium stearate(Na St) as surface... In order to improve the thermal storage capacity of expanded vermiculite(EV) based formstable composite PCM(FS-PCM) via organic modification of EV, first, EV was modified with a sodium stearate(Na St) as surface modifier, and organic EV(OEV) with hydrophobicity and higher adsorption capacity for fatty acid was obtained. A novel capric-stearic acid eutectic(CA-SA)/OEV FS-PCM with high thermal storage capacity was then developed. OEV and CA-SA/OEV were characterized by scanning electron microscopy(SEM), X-ray diffraction(XRD), Fourier transform infrared spectroscopy(FTIR), differential scanning calorimetry(DSC), thermal gravimetry(TG), and thermal cycling test. Results showed that OEV has obvious hydrophobicity and a higher adsorption capacity for fatty acid. Its adsorption ratio has increased by 48.71% compared with that of EV. CA-SA/OEV possesses high thermal storage density(112.52 J/g), suitable melting temperature(20.49 ℃), good chemical compatibility, excellent thermal stability and reliability, indicating great application potential for building energy efficiency. Moreover, organic modification of inorganic matrix may offer novel options for improving its adsorption capacity for organic PCMs and increasing heat storage capacity of corresponding FS-PCMs. 展开更多
关键词 organic expanded vermiculite capric-stearic acid eutectic form-stable composite PCMs thermal energy storage building envelope
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Preparation and characterization of capric-palmitic-stearic acid ternary eutectic mixture/expanded vermiculite composites as form-stabilized thermal energy storage materials 被引量:8
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作者 Weiyi Zhang Xiaoguang Zhang +5 位作者 Zhaohui Huang Zhaoyu Yin Ruilong Wen Yaoting Huang Xiaowen Wu Xin Min 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第2期379-386,共8页
In this study, a composite of form-stable phase change materials (FSPCMs) were prepared by the incorporation of a eutectic mixture of capric-palmitic-stearic acid (CA-PA-SA) into expanded vermiculite (EV) via va... In this study, a composite of form-stable phase change materials (FSPCMs) were prepared by the incorporation of a eutectic mixture of capric-palmitic-stearic acid (CA-PA-SA) into expanded vermiculite (EV) via vacuum impregnation. In the composites, CA-PA-SA was utilized as a thermal energy storage material, and EV served as the supporting material. X-ray diffraction and Fourier transform infrared spectroscopy results demonstrated that CA-PA-SA and EV in the composites only undergo physical combination, not a chemical reaction. Scanning electron microscopy images indicated that CA-PA-SA is sufficiently absorbed in the expanded vermiculite porous network. According to differential scanning calorimetry results, the 70 wt% CA-PA-SA/EV sample melts at 19.3 ℃ with a latent heat of 117.6J/g and solidifies at 17.1 ℃ with a latent heat of 118.3J/g. Thermal cycling measurements indicated that FSPCMs exhibit adequate stability even after being subjected to 200 melting-freezing cycles. Furthermore, the thermal conductivity of the composites increased by approximately 49.58% with the addition of 5 wt% of Cu powder. Hence, CA-PA-SA/EV FSPCMs are effective latent heat thermal energy storage building materials. 展开更多
关键词 capric-palmitic-stearic acid Expanded vermiculite Form-stable composite phase-change material (PCM)
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储能墙板用癸酸-硬脂酸/膨胀珍珠岩定型复合相变材料的制备与表征 被引量:7
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作者 魏艳玲 徐玲玲 李文浩 《南京工业大学学报(自然科学版)》 CAS 北大核心 2012年第6期48-53,共6页
采用真空吸附法将液态的癸酸-硬脂酸(CA-SA)二元共晶相变材料封装入多孔膨胀珍珠岩(EP)中,制备颗粒定型复合相变材料CA-SA/EP,并以石膏为无机基体研制储能墙板。采用傅里叶红外光谱仪(FT-IR)、扫描电子显微镜(SEM)、差示扫描量热仪(DSC... 采用真空吸附法将液态的癸酸-硬脂酸(CA-SA)二元共晶相变材料封装入多孔膨胀珍珠岩(EP)中,制备颗粒定型复合相变材料CA-SA/EP,并以石膏为无机基体研制储能墙板。采用傅里叶红外光谱仪(FT-IR)、扫描电子显微镜(SEM)、差示扫描量热仪(DSC)、多路温度测试仪和热扩散系数测试仪表征材料的性能。结果表明:以质量比4∶1的CA-SA二元共晶相变材料在EP复合相变材料中的最佳吸附质量分数为75%,且在EP的多孔网络结构中均匀分布,复合过程中CA-SA二元共晶相变材料与EP间不发生化学反应,没有新产物形成;CA-SA/EP颗粒定型复合相变材料的相变温度和相变潜热分别为20.7℃和120.4 J/g,500次热循环后,颗粒定型复合相变材料的热性能基本不变。 展开更多
关键词 储能墙板 二元癸酸硬脂酸共晶混合物 膨胀珍珠岩 真空吸附法
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纳米碳化硅改善CPS/PAN相变复合纤维膜的传热速率 被引量:1
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作者 柯惠珍 李永贵 《功能材料》 EI CAS CSCD 北大核心 2020年第1期1100-1104,共5页
以不同质量比例的聚丙烯腈/纳米碳化硅(PAN/SiC)复合纤维膜为支撑材料,以癸酸-棕榈酸-硬脂酸(CPS)三元低共熔物为固-液相变材料,通过物理吸附法制备CPS/PAN/SiC定形相变复合纤维膜。分别采用扫描电子显微镜(SEM)、差示扫描量热仪(DSC)... 以不同质量比例的聚丙烯腈/纳米碳化硅(PAN/SiC)复合纤维膜为支撑材料,以癸酸-棕榈酸-硬脂酸(CPS)三元低共熔物为固-液相变材料,通过物理吸附法制备CPS/PAN/SiC定形相变复合纤维膜。分别采用扫描电子显微镜(SEM)、差示扫描量热仪(DSC)和传热测试装置研究不同含量纳米SiC对定形相变复合纤维膜的形貌特征、储热性能、热能储存和释放速率的影响。SEM图像显示负载不同含量纳米SiC对CPS/PAN/SiC定形相变复合纤维膜的形貌结构没有显著影响。DSC测试结果表明随着支撑纤维膜中SiC颗粒含量的增加,定形相变复合纤维膜的相变温度和相变焓值没有明显变化。根据传热测试数据显示随着纳米SiC含量的增加,定形相变复合纤维膜的融化与结晶时间显著缩短了约20%~46%。 展开更多
关键词 相变材料 癸酸-棕榈酸-硬脂酸三元低共熔物 纳米碳化硅 热性能 传热速率
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