1 - 2 |
Advances in sorption systems for energy efficient heating and cooling Cabeza LF, Schossig P |
3 - 39 |
Review on sorption materials and technologies for heat pumps and thermal energy storage Cabeza LF, Sole A, Barreneche C |
40 - 46 |
"Water - Silica Siogel" working pair for adsorption chillers: Adsorption equilibrium and dynamics Sapienza A, Velte A, Girnik I, Frazzica A, Fuldner G, Schnabel L, Aristov Y |
47 - 58 |
An alternative approach towards absorption heat pump working pair screening Chatzitakis P, Dawoud B |
59 - 68 |
New materials for adsorption heat transformation and storage Henninger SK, Ernst SJ, Gordeeva L, Bendix P, Frohlich D, Grekova AD, Bonaccorsi L, Aristov Y, Jaenchen J |
69 - 78 |
Nanostructured metal hydride - Polymer composite as fixed bed for sorption technologies. Advantages of an innovative combined approach by high-energy ball milling and extrusion techniques Pentimalli M, Imperi E, Zaccagnini A, Padella F |
79 - 86 |
Surface silanation of alumina-silica zeolites for adsorption heat pumping Bonaccorsi L, Calabrese L, Alioto S, Bruzzaniti P, Proverbio E |
87 - 94 |
Adsorbent working pairs for solar thermal energy storage in buildings Frazzica A, Freni A |
95 - 104 |
Efficiency analysis of semi-open sorption heat pump systems Gluesenkamp KR, Chugh D, Abdelaziz O, Moghaddam S |
105 - 114 |
Adsorptive transformation and storage of renewable heat: Review of current trends in adsorption dynamics Aristov YI |
115 - 125 |
Monitoring of gas driven absorption heat pumps and comparing energy efficiency on primary energy Fumagalli M, Sivieri A, Aprile M, Motta M, Zanchi M |
126 - 140 |
Increasing the share of renewables through adsorption solar cooling: A validated case study Palomba V, Vasta S, Freni A, Pan QW, Wang RZ, Zhai XQ |
141 - 153 |
Evaporator development for adsorption heat transformation devices - Influencing factors on non-stationary evaporation with tube-fin heat exchangers at sub-atmospheric pressure Volmer R, Eckert J, Fuldner G, Schnabel L |
154 - 161 |
A novel adsorption module with fiber heat exchangers: Performance analysis based on driving temperature differences Wittstadt U, Fuldner G, Laurenz E, Warlo A, Grosse A, Herrmann R, Schnabel L, Mittelbach W |
162 - 173 |
Seasonal thermochemical energy storage: Comparison of the experimental results with the modelling of the falling film tube bundle heat and mass exchanger unit Daguenet-Frick X, Gantenbein P, Muller J, Fumey B, Weber R |
174 - 179 |
Susceptibility to corrosion of aluminium alloy components in ethanol adsorption chiller Proverbio E, Calabrese L, Capri A, Bonaccorsi L, Dawoud B, Frazzica A |
180 - 185 |
Modelling and development of a generator for a domestic gas-fired carbon-ammonia adsorption heat pump Rivero-Pacho AM, Critoph RE, Metcalf SJ |