Form‐Stabilized Polyethylene Glycol/Palygorskite Composite Phase Change Material: Thermal Energy Storage Properties, Cycling Stability, and Thermal Durability     
Yazarlar (8)
Ahmet Sarı
Karadeniz Teknik Üniversitesi, Türkiye
Mohammed Ouikhalfan
Karadeniz Technical University, Türkiye
Hassan Chehouani
Cadi Ayyad University, Fas
Gökhan Hekimoğlu
Karadeniz Teknik Üniversitesi, Türkiye
Doç. Dr. Alper BİÇER Tokat Gaziosmanpaşa Üniversitesi, Türkiye
Amir Al‐Ahmed
King Fahd University Of Petroleum And Minerals, Suudi Arabistan
Fahad A Al‐Sulaiman
King Fahd University Of Petroleum And Minerals, Suudi Arabistan
Vineet Veer Tyagi
Shri Mata Vaishno Devi University, Hindistan
Makale Türü Özgün Makale
Makale Alt Türü SSCI, AHCI, SCI, SCI-Exp dergilerinde yayınlanan tam makale
Dergi Adı Polymer Engineering and Science
Dergi ISSN 0032-3888 Wos Dergi Scopus Dergi
Dergi Tarandığı Indeksler SCI-Expanded
Dergi Grubu Q4
Makale Dili İngilizce
Basım Tarihi 05-2020
Cilt No 60
Sayı 5
Sayfalar 909 / 916
DOI Numarası 10.1002/pen.25346
Makale Linki https://onlinelibrary.wiley.com/doi/abs/10.1002/pen.25346
Özet
In this work, polyethylene glycol (PEG) as a phase change material (PCM) was incorporated with palygorskite (Pal) clay to develop a novel form-stable composite PCM (F-SCPCM). The Pal/PEG(40 wt%) composite was defined as F-SCPCM and characterized using SEM/EDS, FT-IR, XRD, DSC, and TGA techniques. The DSC results revealed that the F-SCPCM has a melting temperature of 32.5°C and latent heat capacity of 64.3 J/g for thermal energy storage (TES) applications. Thermal cycling test showed that the F-SCPCM had good cycling thermal/chemical stability after 500 cycles. The TGA data proved that that both cycled and non-cycled F-SCPCMs had considerable high thermal durability. Consequently, the created F-SCPCM could be considered as an additive material for production of green construction components with TES capability. POLYM. ENG. SCI., 60:909–916, 2020. © 2020 Society of Plastics Engineers.
Anahtar Kelimeler