[引用][C] Microencapsulation of salts for enhanced thermochemical storage materials

R Cuypers, AJ de Jong, J Eversdijk, J van't Spijker… - 40th Annual meeting and …, 2013

Survey summary on salts hydrates and composites used in thermochemical sorption heat storage: a review

M Zbair, S Bennici - Energies, 2021 - mdpi.com
To improve the proficiency of energy systems in addition to increasing the usage of
renewable energies, thermal energy storage (TES) is a strategic path. The present literature …

Alginate‐Derived Salt/Polymer Composites for Thermochemical Heat Storage

PA Kallenberger, K Posern, K Linnow… - Advanced …, 2018 - Wiley Online Library
Thermochemical heat storage composites based on inorganic salt hydrates embedded in a
hydrogel‐derived polymeric matrix are presented. The synthesis offers the flexibility to obtain …

Water sorption-based thermochemical storage materials: A review from material candidates to manufacturing routes

A Palacios, ME Navarro, C Barreneche… - Frontiers in Thermal …, 2022 - frontiersin.org
A comprehensive and updated review is provided in this article, with a focus on water
sorption-based thermochemical storage (WSTCS) materials, covering materials and their …

Synthesis and characterization of thermochemical storage material combining porous zeolite and inorganic salts

L Shere, S Trivedi, S Roberts… - Heat Transfer …, 2019 - Taylor & Francis
Thermal energy storage has the potential to decarbonize the heating sector, facilitating the
use of renewable energy sources, in particular solar thermal energy. In this paper we …

Investigation of the impact of zeolite shaping and salt deposition on the characteristics and performance of composite thermochemical heat storage systems

Q Touloumet, G Postole, L Massin, C Lorentz… - Journal of Materials …, 2023 - pubs.rsc.org
Zeolites are promising candidate materials for water-based thermochemical heat storage
applications. In this study, 13X and LiX commercial zeolites of different shapes were …

Microencapsulation of molten salt in stable silica shell via a water-limited sol-gel process for high temperature thermal energy storage

H Zhang, A Balram, H Tiznobaik, D Shin… - Applied Thermal …, 2018 - Elsevier
Microencapsulated phase change material as high temperature latent heat storage (LHS)
has great potential for renewable energy applications. However, high temperature …

Core–shell encapsulation of salt hydrates into mesoporous silica shells for thermochemical energy storage

A Shkatulov, R Joosten, H Fischer… - ACS Applied Energy …, 2020 - ACS Publications
The advent of thermochemical energy storage (TcES), that is, storage of thermal energy by
means of reversible chemical reactions, incites finding pathways of stabilization of …

Synthesis and characterization of microencapsulated sodium sulfate decahydrate as phase change energy storage materials

Z Zhang, Y Lian, X Xu, X Xu, G Fang, M Gu - Applied Energy, 2019 - Elsevier
Sodium sulfate decahydrate has been microencapsulated within a silica shell through a
novel method of reverse micellization and emulsion polymerization. Tetraethoxysilane and 3 …

Polyvinyl alcohol-salt hydrate mixtures as passive thermal energy storage systems

C Alkan, DK Döğüşcü, A Gottschalk, U Ramamoorthi… - Energy Procedia, 2016 - Elsevier
Inorganic salt hydrates are promising candidates as latent heat storage materials entailing,
for example, a high thermal energy storage density and cheap price [1],[2] in spite that they …