Issue 12, 2022

Pressure effect on long-term heat storage ceramics based on Mg-substituted λ-Ti3O5

Abstract

Waste heat energy could be effectively used if the accumulated thermal energy could be conserved. However, neither typical sensible heat-storage materials such as brick and concrete nor latent heat-storage materials such as water and polyethylene glycol can store energy for a prolonged period. Herein we report a heat-storage material, which is a ceramic that exhibits long-term storage of latent heat and release of the heat by applying pressure. This material is Mg-substituted lambda-trititanium-pentoxide (λ-MgxTi3−xO5 where 0 < x ≤ 0.053). λ-MgxTi3−xO5 shows a phase transition to Mg-substituted beta-trititanium-pentoxide (β-MgxTi3−xO5) by pressure application. Mg cation substitution can control the temperature of the heat storage originating from the β- to λ-phase transition from 196 °C (469 K) for x = 0 to 80 °C (353 K) for x = 0.053. This phase transition temperature range is suitable for heat storage from industrial waste and thermal power plants. The accumulated heat energy is maintained at a large value of 215–227 kJ L−1 in the range of 0 < x ≤ 0.053. Such an eco-friendly and pressure-responsive heat-storage ceramic, which can preserve the latent heat energy for a prolonged period, is effective for the sustainable reuse of heat energy that has been wasted in industrial facilities and factories.

Graphical abstract: Pressure effect on long-term heat storage ceramics based on Mg-substituted λ-Ti3O5

Supplementary files

Article information

Article type
Paper
Submitted
11 Mar 2022
Accepted
24 Apr 2022
First published
04 May 2022
This article is Open Access
Creative Commons BY license

Mater. Adv., 2022,3, 4824-4830

Pressure effect on long-term heat storage ceramics based on Mg-substituted λ-Ti3O5

S. Ohkoshi, F. Jia, M. Yoshikiyo, K. Imoto, H. Tokoro, K. Nakagawa, Y. Maeno, A. Namai, R. Harada, K. Hattori, K. Kojima, K. Sugiura and T. Suganuma, Mater. Adv., 2022, 3, 4824 DOI: 10.1039/D2MA00278G

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