Fan Zhixuan, Zhao Yunchao, Liu Xuying, Shi Yu, Jiang Dahua
Jiangxi Province Key Laboratory of Environmental Geotechnical Engineering and Hazards Control, Jiangxi University of Science and Technology, Ganzhou 341000, Jiangxi Province, China.
ACS Omega. 2022 Apr 27;7(18):16097-16108. doi: 10.1021/acsomega.2c01420. eCollection 2022 May 10.
Thermal properties, stability, and reliability of lauric acid-based binary eutectic mixtures for building energy efficiency were studied. The eutectic points and phase change performance of these binary PCMs were obtained as follows: (1) For lauric acid-myristic acid, the mass eutectic point is 70 wt % LA/30 wt % MA. (2) For lauric acid-palmitic acid, the eutectic point is 79 wt % LA/21 wt % PA. (3) For lauric acid-stearic acid, the eutectic point is 82 wt % LA/18 wt % SA. The eutectic PCMs have a melting enthalpy of 166.18, 183.07, and 189.50 J·g and a melting temperature of 35.10, 37.15, and 39.29 °C for lauric-myristic acid, lauric-palmitic acid, and lauric-stearic acid binary eutectic PCMs, respectively. The experimental results are very close to the theoretical results. Moreover, from FT-IR and XRD investigations, we realized that during the preparation of the lauric acid-based binary eutectic fatty acids, no new functional groups were produced. Besides, the TG illustrated that the LA-MA eutectic PCMs, LA-PA eutectic PCMs, and LA-SA eutectic PCMs exhibit excellent thermal stability below 126.51, 135.7, and 110.08 °C, respectively. Finally, lauric acid-based binary eutectic PCMs still show excellent thermal properties and chemical structure after 500 hot and cold cycles. All in all, as a novel material for building energy conservation, lauric acid-based binary eutectic PCMs have broad prospects and good practicability.
研究了用于建筑节能的月桂酸基二元共晶混合物的热性能、稳定性和可靠性。这些二元相变材料的共晶点和相变性能如下:(1)对于月桂酸 - 肉豆蔻酸,质量共晶点为70 wt% LA/30 wt% MA。(2)对于月桂酸 - 棕榈酸,共晶点为79 wt% LA/21 wt% PA。(3)对于月桂酸 - 硬脂酸,共晶点为82 wt% LA/18 wt% SA。月桂 - 肉豆蔻酸、月桂 - 棕榈酸和月桂 - 硬脂酸二元共晶相变材料的共晶相变材料的熔化焓分别为166.18、183.07和189.50 J·g,熔化温度分别为35.10、37.15和39.29°C。实验结果与理论结果非常接近。此外,通过傅里叶变换红外光谱(FT - IR)和X射线衍射(XRD)研究,我们发现,在制备月桂酸基二元共晶脂肪酸过程中,没有产生新的官能团。此外,热重分析(TG)表明,LA - MA共晶相变材料、LA - PA共晶相变材料和LA - SA共晶相变材料分别在126.51、135.7和110.08°C以下表现出优异的热稳定性。最后,经过500次冷热循环后,月桂酸基二元共晶相变材料仍表现出优异的热性能和化学结构。总之,作为一种新型的建筑节能材料,月桂酸基二元共晶相变材料具有广阔的前景和良好的实用性。