Thermally Stable Phase Change Material with High Latent Heat and Low Cost based on an Adipic Acid_Boric Acid Binary Eutectic System
Xie, Shaolei; Sun, Jinhe; Liu, Shang; Han, Lipeng; Ma, Guixiang; Jing, Yan; Jia, Yongzhong
刊名ENERGY TECHNOLOGY
2017-08
卷号5期号:8页码:1322-1327
ISSN号2194-4288
DOI10.1002/ente.201600650
英文摘要An adipic acid/boric acid (AA-BA) binary eutectic mixture containing 80 wt% adipic acid and 20 wt% boric acid was investigated as a new phase change material (PCM) with high latent heat, high thermal stability, and low cost. The materials thermophysical properties and thermal stability were studied using differential scanning calorimetry (DSC), X-Ray Diffraction (XRD), and thermogravimetric analysis (TGA). The thermal stability was investigated insitu over 100cycles using DSC. The phase change temperature of the AA-BA binary eutectic mixture was 135.04 degrees C and the latent heats of the melting and crystallization process were 283.42 and 272.16Jg(-1), respectively. The latent heat of melting only dropped 4.94% after insitu 100cycles using DSC. Following comparison of thermal properties and price of the AA-BA eutectic mixture PCM with those of some composite PCMs, the results indicate that the newly prepared AA-BA eutectic mixture is a potential phase change material for thermal storage tanks.
内容类型期刊论文
源URL[http://ir.isl.ac.cn/handle/363002/34561]  
专题青海盐湖研究所_盐湖资源综合利用工程技术中心
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GB/T 7714
Xie, Shaolei,Sun, Jinhe,Liu, Shang,et al. Thermally Stable Phase Change Material with High Latent Heat and Low Cost based on an Adipic Acid_Boric Acid Binary Eutectic System[J]. ENERGY TECHNOLOGY,2017,5(8):1322-1327.
APA Xie, Shaolei.,Sun, Jinhe.,Liu, Shang.,Han, Lipeng.,Ma, Guixiang.,...&Jia, Yongzhong.(2017).Thermally Stable Phase Change Material with High Latent Heat and Low Cost based on an Adipic Acid_Boric Acid Binary Eutectic System.ENERGY TECHNOLOGY,5(8),1322-1327.
MLA Xie, Shaolei,et al."Thermally Stable Phase Change Material with High Latent Heat and Low Cost based on an Adipic Acid_Boric Acid Binary Eutectic System".ENERGY TECHNOLOGY 5.8(2017):1322-1327.
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