Preparation and Characterization of Graphite-SiO Composites for Thermal Storage Cement-Based Materials.

Materials (Basel)

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.

Published: June 2024

Thermal storage cement-based materials, formed by integrating phase change materials into cementitious materials, exhibit significant potential as energy storage materials. However, poor thermal conductivity severely limits the development and application of these materials. In this study, an amorphous SiO shell is encapsulated on a graphite surface to create a novel thermally modified admixture (C@SiO). This material exhibits excellent thermal conductivity, and the surface-encapsulated amorphous SiO enhances its bond with cement. Further, C@SiO was added to the thermal storage cement-based materials at different volume ratios. The effects of C@SiO were evaluated by measuring the fluidity, thermal conductivity, phase change properties, temperature change, and compressive strength of various thermal storage cement-based materials. The results indicate that the newly designed thermal storage cement-based material with 10 vol% C@SiO increases the thermal conductivity coefficient by 63.6% and the latent heat of phase transition by 11.2% compared to common thermal storage cement-based materials. Moreover, C@SiO does not significantly impact the fluidity and compressive strength of the thermal storage cement-based material. This study suggests that C@SiO is a promising additive for enhancing thermal conductivity in thermal storage cement-based materials. The newly designed thermal storage cement-based material with 10 vol% C@SiO is a promising candidate for energy storage applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11204889PMC
http://dx.doi.org/10.3390/ma17122880DOI Listing

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