Hygroscopic salt-embedded composite materials for sorption-based atmospheric water harvesting

H Shan, P Poredoš, Z Chen, X Yang, Z Ye… - Nature Reviews …, 2024 - nature.com
Sorption-based atmospheric water harvesting has the potential to address water scarcity by
extracting fresh water from the air. The performance of this technology largely depends on …

Salt hydrate–based gas-solid thermochemical energy storage: Current progress, challenges, and perspectives

W Li, JJ Klemeš, Q Wang, M Zeng - Renewable and Sustainable Energy …, 2022 - Elsevier
Due to the prominent advantages of high energy density and long-term energy conservation
ability, salt hydrate-based gas-solid thermochemical energy storage (TCES) is a promising …

Renewable approaches to building heat: exploring cutting-edge innovations in thermochemical energy storage for building heating

K Moulakhnif, HA Ousaleh, S Sair, Y Bouhaj… - Energy and …, 2024 - Elsevier
Thermochemical energy storage (TCES) emerges as a promising solution for building
heating, offering superior energy storage density compared to conventional methods like …

A critical review of salt hydrates as thermochemical sorption heat storage materials: Thermophysical properties and reaction kinetics

T Yan, H Zhang - Solar Energy, 2022 - Elsevier
Salt hydrate-based thermochemical sorption heat storage is believed as one paramount
technology for industrial waste heat and renewable energy such as solar energy recovery …

[HTML][HTML] A study on vermiculite-based salt mixture composite materials for low-grade thermochemical adsorption heat storage

Z Chen, Y Zhang, Y Zhang, Y Su, S Riffat - Energy, 2023 - Elsevier
High-performance renewable energy technologies are desired to meet the enormous
demand during the clean energy transition. Thermal energy storage can help balance the …

[HTML][HTML] Revisiting salt hydrate selection for domestic heat storage applications

N Mazur, MAR Blijlevens, R Ruliaman, H Fischer… - Renewable Energy, 2023 - Elsevier
In this work, we evaluate 454 salt hydrates and 1073 unique hydration reactions in search of
suitable materials for domestic heat storage. The salts and reactions are evaluated based on …

[HTML][HTML] Innovative waste heat valorisation technologies for zero-carbon ships− A review

R Fisher, L Ciappi, P Niknam, K Braimakis… - Applied Thermal …, 2024 - Elsevier
The growing intensity of international commerce and the high share of total global
greenhouse gas emissions by the maritime sector have motivated the implementation of …

[HTML][HTML] Diffusion limited hydration kinetics of millimeter sized salt hydrate particles for thermochemical heat storage

J Aarts, S de Jong, M Cotti, P Donkers, H Fischer… - Journal of Energy …, 2022 - Elsevier
Potassium carbonate is a promising salt for thermochemical heat storage. For an application
mm-sized salt hydrate particles are manufactured to be loaded inside a reactor. The step …

[HTML][HTML] Hydration fronts in packed particle beds of salt hydrates: Implications for heat storage

H Huinink, S de Jong, V Houben - Journal of Energy Storage, 2023 - Elsevier
Hydration of packed beds of salt hydrate particles underpins the working principle of low
temperature thermochemical energy storage (TCES). Typically, the salt hydrate particles are …

Combined enhancement of thermal and chemical performance of closed thermochemical energy storage system by optimized tree-like heat exchanger structures

G Humbert, Y Ding, A Sciacovelli - Applied Energy, 2022 - Elsevier
The full exploitation of thermochemical energy storage potential is still hampered by several
technical limitations, such as the poor heat and mass transfer in the reactive beds. This …