homepage  Research  Publications  2013
 
H. Z. Ke, Y. B. Cai, Q. F. Wei, Y. Xiao, J. Dong, Y. Hu, L. Song, G. F. He, Y. Zhao and H. Fong (2013) International Journal Of Energy Research 37 657-664.
Date: 2014-06-23   Author: SKLFS  ,   Source: WOS  ,
 

H. Z. Ke, Y. B. Cai, Q. F. Wei, Y. Xiao, J. Dong, Y. Hu, L. Song, G. F. He, Y. Zhao and H. Fong (2013) Electrospun ultrafine composite fibers of binary fatty acid eutectics and polyethylene terephthalate as innovative form-stable phase change materials for storage and retrieval of thermal energy. Journal/International Journal Of Energy Research 37 657-664. [In English]
Web link: http://dx.doi.org/10.1002/er.2888
Keywords: phase change materials (PCMs), thermal energy storage, fatty acid, eutectics, electrospinning, HEATING APPLICATIONS, BLENDS, PCM, NANOFIBERS, COPOLYMER, MIXTURE, RELIABILITY, PERFORMANCE, WALLBOARD, SYSTEM
Abstract: In this study, four fatty acids of lauric acid (LA), myristic acid (MA), palmitic acid (PA), and stearic acid (SA) were selected to prepare six binary fatty acid eutectics of LA-MA, LA-PA, LA-SA, MA-PA, MA-SA, and PA-SA, thereafter, electrospun ultrafine composite fibers with the binary fatty acid eutectics encapsulated in the supporting matrices of polyethylene terephthalate (PET) were prepared as innovative form-stable phase change materials for storage and retrieval of thermal energy. The morphological structures and thermal energy storage properties of the ultrafine composite fibers were characterized by scanning electron microscope (SEM) and differential scanning calorimeter (DSC), respectively. The SEM results indicated that the fibers had the cylindrical morphology with diameters of 12 mu m, some had smooth surfaces, while others had wrinkled surfaces with grooves. The DSC results indicated that the phase transition temperatures of binary fatty acid eutectics were lower than those of individual fatty acids, the enthalpy values associated with melting and crystallization for the eutectics encapsulated in the composite fibers were considerably reduced, whereas there were no appreciable changes on the phase transition temperatures. Copyright (c) 2012 John Wiley &, Sons, Ltd.

 
Print    Close
 
 
   
  
 
Relevant link
Contact us
State Key Laboratory of Fire Science, University of Science and Technology of China
Jinzhai Road 96, Hefei, Anhui, P. R. China
P. O.: 230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.edu.cn
 
 
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
Tel:(+86)551 3601651 | Fax:(+86)551 3601669 | E-mail:sklfs@ustc.edu.cn | ICP: D20380176