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Supercooled erythritol for high-performance seasonal thermal energy storage

Engineering and Technology

Supercooled erythritol for high-performance seasonal thermal energy storage

S. Yang, H. Shi, et al.

Discover how seasonal storage of solar thermal energy using supercooled phase change materials (PCMs) like erythritol, stabilized by carrageenan, can revolutionize heating solutions. This innovative research by Sheng Yang, Hong-Yi Shi, Jia Liu, Yang-Yan Lai, Özgür Bayer, and Li-Wu Fan showcases an eco-friendly method for harnessing solar energy safely and effectively.

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~3 min • Beginner • English
Abstract
Seasonal storage of solar thermal energy through supercooled phase change materials (PCM) offers a promising solution for decarbonizing space and water heating in winter. Despite the high energy density and adaptability, natural PCMs often lack the necessary supercooling for stable, long-term storage. Leveraging erythritol, a sustainable mid-temperature PCM with high latent heat, we introduce a straightforward method to stabilize its supercooling by incorporating carrageenan (CG), a bio-derived food thickener. By improving the solid-liquid interfacial energy with the addition of CG the latent heat of erythritol can be effectively locked at a very low temperature. We show that the composite PCM can sustain an ultrastable supercooled state below -30 °C, which guarantees no accidental loss of the latent heat in severe cold regions on Earth. We further demonstrate that the common ultrasonication method can be used as the key to unlocking the latent heat stored in the CG-thickened erythritol, showing its great potential to serve as a high-performance, eco-friendly PCM for long-term seasonal solar energy storage.
Publisher
Nature Communications
Published On
Jun 11, 2024
Authors
Sheng Yang, Hong-Yi Shi, Jia Liu, Yang-Yan Lai, Özgür Bayer, Li-Wu Fan
Tags
solar thermal energy
supercooled phase change materials
erythritol
carrageenan
seasonal energy storage
eco-friendly
heat release
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