Reviewing experimental studies on latent thermal energy storage in cementitious composites: report of the RILEM TC 299-TES
Claudia Fabiani
1, 2
,
E Erkizia
3
,
Didier Snoeck
4
,
Ilda Tole
5
,
Renan Rocha Ribeiro
6
,
Miguel Azenha
6
,
Antonio Caggiano
7
,
2
EAPLAB at CIRIAF Interuniversity Research Centre on Pollution and Environment “M. Felli”,, Perugia, Italia
|
Publication type: Journal Article
Publication date: 2025-02-05
scimago Q1
wos Q1
SJR: 1.092
CiteScore: 6.3
Impact factor: 3.9
ISSN: 13595997, 18716873
Abstract
In recent years, substantial progress has been achieved in the development of multifunctional cement-based composites, targeting improved energy efficiency and environmental sustainability while minimizing material depletion. Leveraging the high thermal capacity of these materials facilitates controlled heat storage and release, providing versatile applications in renewable energy management and heat regulation, influencing structural integrity and long-term resistance. Recent research has integrated phase change materials (PCMs) into these composites to harness their superior thermal energy density. This comprehensive review examines the latest experimental research findings on these hybrid materials, emphasizing their thermo-physical behaviour and influence on structural properties and durability. Furthermore, it provides an overview of PCM characteristics and their integration into cement-based matrices. It critically analyses the interaction between PCMs and the cement matrix, explaining effects on structural performance, hydration processes, and freeze–thaw mechanisms. Furthermore, the paper explores recent experimental techniques and protocols for measuring and assessing the structural and thermo-physical properties of these composites. By identifying key trends, the review aims to provide valuable insights into the design and optimization of cement-based composites with PCMs, ultimately enhancing energy efficiency and resource conservation.
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Fabiani C. et al. Reviewing experimental studies on latent thermal energy storage in cementitious composites: report of the RILEM TC 299-TES // Materials and Structures/Materiaux et Constructions. 2025. Vol. 58. No. 2. 58
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Fabiani C., Erkizia E., Snoeck D., Rajczakowska M., Tole I., Rocha Ribeiro R., Azenha M., Caggiano A., Pisello A. L. Reviewing experimental studies on latent thermal energy storage in cementitious composites: report of the RILEM TC 299-TES // Materials and Structures/Materiaux et Constructions. 2025. Vol. 58. No. 2. 58
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TY - JOUR
DO - 10.1617/s11527-024-02544-2
UR - https://link.springer.com/10.1617/s11527-024-02544-2
TI - Reviewing experimental studies on latent thermal energy storage in cementitious composites: report of the RILEM TC 299-TES
T2 - Materials and Structures/Materiaux et Constructions
AU - Fabiani, Claudia
AU - Erkizia, E
AU - Snoeck, Didier
AU - Rajczakowska, Magdalena
AU - Tole, Ilda
AU - Rocha Ribeiro, Renan
AU - Azenha, Miguel
AU - Caggiano, Antonio
AU - Pisello, Anna Laura
PY - 2025
DA - 2025/02/05
PB - Springer Nature
IS - 2
VL - 58
SN - 1359-5997
SN - 1871-6873
ER -
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@article{2025_Fabiani,
author = {Claudia Fabiani and E Erkizia and Didier Snoeck and Magdalena Rajczakowska and Ilda Tole and Renan Rocha Ribeiro and Miguel Azenha and Antonio Caggiano and Anna Laura Pisello},
title = {Reviewing experimental studies on latent thermal energy storage in cementitious composites: report of the RILEM TC 299-TES},
journal = {Materials and Structures/Materiaux et Constructions},
year = {2025},
volume = {58},
publisher = {Springer Nature},
month = {feb},
url = {https://link.springer.com/10.1617/s11527-024-02544-2},
number = {2},
pages = {58},
doi = {10.1617/s11527-024-02544-2}
}