Brochure on Thermal Energy Storage Technologies

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EERA Joint Program on Energy Storage - SP3 on Thermal Energy Storage High-temperature latent heat storage 1. https://www.energy.gov/eere/solar/project-profile-encapsulated-phase-change-material-thermal-storage-baseload-csp-plants 2. Jacob R, & Steinmann W-D., Elsevier, (2018) 3. EASE/EERA Tech. Roadmap, (2017, 2013)BVES, Fact Sheet & Anwendungsbeispiel Speichertechnologien (2016) 4. IEA-ETSAP,IRENA© Tech. Brief E17, (2013) 5. NREL Milestone Report TP-5500-51446, (2011) 6. Tamme, R, TES for Large Scale CSP Plants, DLR German Aerospace Center, (2009) 7. http://www.jinhe-energy.com/list/?1071.html Thermochemical energy storage – Chemical reactions 1. M. Linder, Advances in Thermal Energy Storage Systems. 2015. 2. EASE/EERA, “European Energy Storage Technology Development Roadmap 2017 Update,” p. 108, 2017. 3. VDI, “Energiespeicher VDI-Statusreport Oktober 2017,” Vdi, 2017. 4. M. Schmidt, C. Szczukowski, C. Roßkopf, M. Linder, and A. Wörner, “Experimental results of a 10 kW high temperature thermochemical storage reactor based on calcium hydroxide,” Appl. Therm. Eng., vol. 62, no. 2, pp. 553–559, 2014. 5. Y. A. Criado, A. Huille, S. Rougé, and J. C. Abanades, “Experimental investigation and model validation of a CaO/Ca(OH) 2 fluidized bed reactor for thermochemical energy storage applications,” Chem. Eng. J., vol. 313, pp. 1194–1205, 2017. 6. M. Richter, M. Bouché, and M. Linder, “Heat transformation based on CaCl 2 /H 2 O – Part A: Closed operation principle,” Appl. Therm. Eng., vol. 102, pp. 615–621, 2016. 7. M. Dieterich, I. Bürger, and M. Linder, “Open and closed metal hydride system for high thermal power applications: Preheating vehicle components,” Int. J. Hydrogen Energy, vol. 42, no. 16, pp. 11469–11481, 2017. 8. C. Weckerle, I. Bürger, and M. Linder, “Novel reactor design for metal hydride cooling systems,” Int. J. Hydrogen Energy, vol. 42, no. 12, pp. 8063–8074, 2017. Thermochemical energy storage – Adsorption 1. Krönauer, A.; Lävemann, E.; Brückner S.; Hauer, A. Mobile Sorption Heat Storage in Industrial Waste Heat Recovery. Energy Procedia 2015, 73, 272–280. 2. V. Palomba, S. Vasta, A. Freni, Experimental testing of AQSOA FAM Z02/water adsorption system for heat and cold storage, Appl. Therm. Eng. 124 (2017). doi:10.1016/j.applthermaleng.2017.06.085. http://eera-es.eu/

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