A novel variant of composite phase-change material (PCM) was developed by incorporating 0.5 wt% aluminum oxide (Al2O3), silicon dioxide (SiO2), copper (II) oxide (CuO) and silver (Ag) nanomaterials into myristic acid. In this formulation, myristic acid served as the foundational material, while aluminum oxide, silicon dioxide, copper (II) oxide and silver were employed as supporting components. The morphology and crystalline structure of the nanomaterials were studied using field-emission scanning electron microscopy and X-ray diffraction analysis, respectively. The composite PCMs were fabricated using a two-step process. The phase-change properties of the composite PCMs were assessed using differential scanning calorimetry. The nanomaterials (0.5 wt% aluminum oxide, silicon dioxide, copper (II) oxide and silver) were suspended in myristic acid separately to investigate the heat-transfer performance of the composite PCMs during phase-change processes (melting and freezing). The results clearly indicated that the duration of the melting and freezing processes of the composite PCMs decreased compared with that of the pure PCM. Thus, the newly prepared composite PCMs are potential candidates for harvesting solar energy for low-temperature heating applications.
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September 2024
Research Article|
September 27 2024
Effect of nanomaterials on the melting/freezing characteristics of phase-change material
Sivasamy Paulsamy, PhD;
Sivasamy Paulsamy, PhD
Associate Professor, Department of Mechanical Engineering, P.S.R. Engineering College, Sivakasi, India (corresponding author: siva31samy@gmail.com)
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Pitchipoo Pandian, PhD;
Pitchipoo Pandian, PhD
Professor, Department of Mechanical Engineering, P.S.R. Engineering College, Sivakasi, India
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Jegan Balasubramani, ME;
Jegan Balasubramani, ME
Assistant Professor, Department of Mechanical Engineering, Velammal College Engineering and Technology, Madurai, India
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Karthik Kaliswaran, ME;
Karthik Kaliswaran, ME
Assistant Professor, Department of Mechanical Engineering, P.S.R. Engineering College, Sivakasi, India
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Mahadevi Dharmaraj, ME;
Mahadevi Dharmaraj, ME
Assistant Professor, Department of Mechanical Engineering, P.S.R. Engineering College, Sivakasi, India
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Gnanakumar Natarajan, ME
Gnanakumar Natarajan, ME
Assistant Professor, Department of Mechanical Engineering, P.S.R. Engineering College, Sivakasi, India
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Publisher: Emerald Publishing
Received:
February 17 2024
Accepted:
May 15 2024
Online ISSN: 2045-984X
Print ISSN: 2045-9831
Emerald Publishing Limited: All rights reserved
2024
Nanomaterials and Energy (2024) 13 (3): 84–91.
Article history
Received:
February 17 2024
Accepted:
May 15 2024
Citation
Paulsamy S, Pandian P, Balasubramani J, Kaliswaran K, Dharmaraj M, Natarajan G (2024), "Effect of nanomaterials on the melting/freezing characteristics of phase-change material". Nanomaterials and Energy, Vol. 13 No. 3 pp. 84–91, doi: https://doi.org/10.1680/jnaen.24.00021
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