Searched for: subject%3A%22Storage%255C%2Bdensities%22
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document
Shkatulov, A. (author), Joosten, R. (author), Fischer, H. (author), Huinink, H. (author)
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 thermochemical materials for thermal batteries of the future. Currently, salt hydrates such as LiCl·H2O, CaCl2·6H2O, and SrBr2·6H2O are being actively studied for TcES in...
article 2020
document
Gaeini, M. (author), Rouws, A.L. (author), Salari, J.W.O. (author), Zondag, H.A. (author), Rindt, C.C.M. (author)
Thermochemical heat storage in salt hydrates is a promising method to improve the solar fraction in the built environment. The major concern at this stage is liquefaction followed by washing out of active material and agglomeration into large chunks of salt, thus deteriorating the diffusive properties of the porous salt hydrate structure. In...
article 2018
document
de Jong, A.J. (author), van Vliet, L.D. (author), Hoegaerts, C.L.G. (author), Roelands, C.P.M. (author), Cuypers, R. (author)
Long-term and compact storage of solar energy is crucial for the eventual transition to a 100% renewable energy economy. For this, thermochemical materials provide a promising solution. The compactness of a long-term storage system is determined by the thermochemical reaction, operating conditions, and system implementation with the necessary...
conference paper 2016
document
Marée, A.G.M. (author), Moerel, J.L.P.A. (author), Weiland-Veltmans, W.H.M. (author), Wierkx, F.J.M. (author), Zevenbergen, J. (author)
This paper reports on significant technological progress made over the last few years in determining the feasibility of HNF-based monopropellants. An HNF-based monopropellant is an interesting alternative for hydrazine as monopropellant for satellite propulsion. New non-toxic monopropellants based on dissolved energetic oxidizer salts (e.g. HNF,...
conference paper 2004
Searched for: subject%3A%22Storage%255C%2Bdensities%22
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