1 |
Effect of LiOH Addition on Dehydration Reaction of Mg(OH)(2) Kurosawa R, Ryu J Journal of Chemical Engineering of Japan, 52(1), 152, 2019 |
2 |
In-depth investigation of thermochemical performance in a heat battery: Cyclic analysis of K2CO3, MgCl2 and Na2S Sogutoglu LC, Donkers PAJ, Fischer HR, Huinink HP, Adan OCG Applied Energy, 215, 159, 2018 |
3 |
An overview of thermal energy storage systems Alva G, Lin YX, Fang GY Energy, 144, 341, 2018 |
4 |
Thermal Conductivity Measurements of Expanded Graphite-Magnesium Hydroxide Composites for Packed Bed Reactors of Chemical Heat Storage/Pump Systems Zamengo M, Tomaskovic J, Ryu J, Kato Y Journal of Chemical Engineering of Japan, 49(3), 261, 2016 |
5 |
Kinetic study of the dehydration reaction of lithium sulfate monohydrate crystals using microscopy and modeling Lan SQ, Zondag H, van Steenhoven A, Rindt C Thermochimica Acta, 621, 44, 2015 |
6 |
The influence of gas-solid reaction kinetics in models of thermochemical heat storage under monotonic and cyclic loading Nagel T, Shao H, Rosskopf C, Linder M, Worner A, Kolditz O Applied Energy, 136, 289, 2014 |
7 |
Dehydration and Hydration Behavior of Mg-Co Mixed Hydroxide as a Material for Chemical Heat Storage Ryu J, Mizuno T, Ishitobi H, Kato Y Journal of Chemical Engineering of Japan, 47(7), 579, 2014 |
8 |
De- and rehydration of Ca(OH)(2) in a reactor with direct heat transfer for thermo-chemical heat storage. Part A: Experimental results Schaube F, Kohzer A, Schutz J, Worner A, Muller-Steinhagen H Chemical Engineering Research & Design, 91(5), 856, 2013 |
9 |
De- and rehydration of Ca(OH)(2) in a reactor with direct heat transfer for thermo-chemical heat storage. Part B: Validation of model Schaube F, Utz I, Worner A, Muller-Steinhagen H Chemical Engineering Research & Design, 91(5), 865, 2013 |
10 |
Non-equilibrium thermo-chemical heat storage in porous media: Part 2-A 1D computational model for a calcium hydroxide reaction system Shao H, Nagel T, Rosskopf C, Linder M, Worner A, Kolditz O Energy, 60, 271, 2013 |