热导率
材料科学
月桂酸
复合数
相变材料
热稳定性
色散(光学)
热能储存
复合材料
热的
化学工程
化学
有机化学
气象学
生态学
工程类
物理
光学
脂肪酸
生物
作者
Ruilong Wen,Xiao Zhu,Chen Yang,Zhenhua Sun,Liangpei Zhang,Youguo Xu,Jiaxin Qiao,Xiaowen Wu,Xin Min,Zhaohui Huang
标识
DOI:10.1016/j.est.2021.103921
摘要
The utilization of phase change material (PCM) of lauric acid (LA) in thermal energy storage system is limited by liquid phase leakage and relatively low thermal conductivity. Therefore, a novel composite PCM of [email protected]/Attapulgite was prepared in order to overcome the aforementioned issues. Herein, the nano-Cu were firstly to disperse into LA with different loadings (1, 2, 3 and 4 wt.%,) by ultrasonic dispersion method to form the PCM of [email protected] Then, [email protected] was combined with the supporting material of attapulgite by vacuum impregnation method. The results show that [email protected] with 2 wt.% of Cu has the best dispersion of Cu with good thermal properties and high thermal conductivity (0.33 W/(m·K)). The composite PCM of [email protected]/Attapulgite melted/solidified at 42.1 °C/40.6 °C with the melting/solidification latent heat of 87.1 J/g/86.2 J/g, and exhibited good thermal stability and thermal reliability. The thermal conductivity of [email protected]/Attapulgite reached 0.46 W/(m·K) which was synergistically enhanced by Nano-Cu and attapulgite. The above results indicated that the composite PCM of [email protected]/Attapulgite have potential application in energy conservation of buildings.
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