Ground tire rubber/activated carbon/expanded graphite aerogels and foams as support material for the preparation of polyethylene glycol composite phase change materials for thermal energy storage applications

被引:14
作者
Kenganal, Shashir S. [1 ]
Sahoo, Abanti [1 ]
机构
[1] Natl Inst Technol Rourkela, Dept Chem Engn, Rourkela 769008, Orissa, India
关键词
Ground tire rubber; Aerogel; Porogen leaching; Expanded graphite; Activated carbon; Composite phase change material; WASTE TIRE; CARBONACEOUS MATERIALS; RUBBER; CONDUCTIVITY; SPECTROSCOPY; BEHAVIOR;
D O I
10.1016/j.est.2023.109805
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The 3 "Rs" of trash management, reduce, reuse, and recycle, lead to a theoretical topic. Techniques for waste management should reprocess these waste products into new functional materials. In the area of thermal energy storage, phase change material (PCM) is another hot topic due to its high latent heat. Unfortunately, it is constrained by issues such as simple leakage and poor heat conductivity. Herein, we integrate waste material and phase change material by preparing composite phase change material in which aerogels and foams serve as 3D support matrices that were made using ground tire rubber, activated carbon and expanded graphite additives to successfully overcome the aforementioned disadvantages of phase change material via Porogen leaching and freeze drying techniques. Experiment findings demonstrated that the CPCM has excellent shape stability. TAA5 and TAE5 had the highest melting enthalpies, at 146.21 and 148.23 J/g respectively. After 500 thermal test cycles and 25 photothermal test cycles, the prepared CPCMs exhibit strong thermal reliability as evidenced by a small decrease in enthalpy value. In addition, the thermal conductivity of TAE15 was remarkable at 1.18 W/ (mK), which was 5.36 times greater than that of PEG 0.22 W/(mK). The use of AC and EG as additives boosted TAE15's photothermal conversion efficiency to 93 %. Hence, CPCMs offer a significant deal of potential in fields such as thermal energy storage, solar energy, and building energy savings.
引用
收藏
页数:17
相关论文
共 74 条
[1]   Review on Nanostructure Supporting Material Strategies in Shape -stabilized Phase Change Materials [J].
Abdeali, Golnoosh ;
Bahramian, Ahmad Reza ;
Abdollahi, Mahdi .
JOURNAL OF ENERGY STORAGE, 2020, 29
[2]   Synthesis and Optical Properties of PVA/PANI/Ag Nanocomposite films [J].
Abdelhamied, M. M. ;
Atta, A. ;
Abdelreheem, A. M. ;
Farag, A. T. M. ;
El Okr, M. M. .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2020, 31 (24) :22629-22641
[3]   Nanoconfined phase change materials for thermal energy applications [J].
Aftab, Waseem ;
Huang, Xinyu ;
Wu, Wenhao ;
Liang, Zibin ;
Mahmood, Asif ;
Zou, Ruqiang .
ENERGY & ENVIRONMENTAL SCIENCE, 2018, 11 (06) :1392-1424
[4]   An eco-friendly and facile montmorillonite nanosheets aerogel based phase change materials for efficient solar-to-thermal energy conversion [J].
Ai, Hong ;
Lv, Linda ;
Chen, Taorui ;
Zhang, Yang ;
Dong, Lijie ;
Song, Shaokun .
ENERGY CONVERSION AND MANAGEMENT, 2022, 253
[5]  
Ali A.A.Q., 2022, CURR RES GREEN SUSTA, V5
[6]   Structurally advanced hybrid support composite phase change materials: Architectural synergy [J].
Atinafu, Dimberu G. ;
Yun, Beom Yeol ;
Yang, Sungwoong ;
Yuk, Hyeonseong ;
Wi, Seunghwan ;
Kim, Sumin .
ENERGY STORAGE MATERIALS, 2021, 42 :164-184
[7]   A facile one-step synthesis of porous N-doped carbon from MOF for efficient thermal energy storage capacity of shape-stabilized phase change materials [J].
Atinafu, Dimberu G. ;
Dong, Wenjun ;
Hou, Changmin ;
Andriamitantsoa, Radoelizo S. ;
Wang, Jingjing ;
Huang, Xiubing ;
Gao, Hongyi ;
Wang, Ge .
MATERIALS TODAY ENERGY, 2019, 12 :239-249
[8]   Study of the distribution of rubber particles in ground tire rubber/polypropylene blends [J].
Basso, Alberto ;
Zhang, Yang ;
Linnemann, Lars ;
Hansen, Hans Norgaard .
MATERIALS TODAY-PROCEEDINGS, 2021, 34 :311-316
[9]   A review on thermal energy storage using phase change materials in passive building applications [J].
Ben Romdhane, Sahar ;
Amamou, Amani ;
Ben Khalifa, Rim ;
Said, Nejla Mahjoub ;
Younsi, Zohir ;
Jemni, Abdelmajid .
JOURNAL OF BUILDING ENGINEERING, 2020, 32
[10]   On the characterization of disordered and heterogeneous carbonaceous materials by Raman spectroscopy [J].
Beyssac, O ;
Goffé, B ;
Petitet, JP ;
Froigneux, E ;
Moreau, M ;
Rouzaud, JN .
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2003, 59 (10) :2267-2276