Sodium Nitrite-Sodium Nitrate Eutectic Based Composite Phase Change Material (Cpcm) for Medium-Temperature Thermal Energy Storage (Tes): Exploring the Relationship between Microstructures and Thermal Properties

33 Pages Posted: 3 Apr 2024

See all articles by Benjamin Gregoire

Benjamin Gregoire

University of Birmingham

Hongkun Ma

University of Birmingham

Anabel Palacios

University of Birmingham

Song Yang

University of Birmingham

Mengqi Bai

North China Electric Power University

Tongtong Zhang

University of Birmingham

Yulong Ding

University of Birmingham

Abstract

This paper is concerned with a novel medium-temperature composite phase change material (CPCM). More specifically, the CPCM contains a sodium nitrite-sodium nitrate phase change material for latent and sensible heat storage, magnesium oxide as a ceramic matrix material for shape-stabilisation and sensible heat storage, and expanded graphite as a thermal conductivity enhancer material (TCEM) to improve heat transfer. The focus is on understanding the relationship between the CPCM microstructures and their thermal properties. This CPCM was found to be unique, exhibiting both a reversible solid-solid transition (≈175 °C) and a reversible solid-liquid transition (≈223 °C), with a total latent heat of fusion of ~120 J/g. In-depth microstructural characterisation of the CPCM indicated adequate thermal stability during thermal cycling in air up to 350 °C, which was also confirmed by their stable latent heat and thermal conductivity. The results highlighted a correlation between microstructures of the CPCMs and their thermal properties, as well as potential thermal decomposition reactions in high temperature industrial applications of molten salts such as concentrating solar power.

Keywords: Latent heat, Energy density, Microstructure, Molten salt, Thermal decomposition, Mobile heat

Suggested Citation

Gregoire, Benjamin and Ma, Hongkun and Palacios, Anabel and Yang, Song and Bai, Mengqi and Zhang, Tongtong and Ding, Yulong, Sodium Nitrite-Sodium Nitrate Eutectic Based Composite Phase Change Material (Cpcm) for Medium-Temperature Thermal Energy Storage (Tes): Exploring the Relationship between Microstructures and Thermal Properties. Available at SSRN: https://ssrn.com/abstract=4783292 or http://dx.doi.org/10.2139/ssrn.4783292

Benjamin Gregoire (Contact Author)

University of Birmingham ( email )

Hongkun Ma

University of Birmingham ( email )

Edgbaston, B15 2TT
United Kingdom

Anabel Palacios

University of Birmingham ( email )

Edgbaston, B15 2TT
United Kingdom

Song Yang

University of Birmingham ( email )

Edgbaston, B15 2TT
United Kingdom

Mengqi Bai

North China Electric Power University ( email )

School of Business Administration,NCEPU
No. 2 Beinong Road, Changqing District
Beijing, 102206
China

Tongtong Zhang

University of Birmingham ( email )

Edgbaston, B15 2TT
United Kingdom

Yulong Ding

University of Birmingham ( email )

Edgbaston, B15 2TT
United Kingdom

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