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Brochure on Thermal Energy Storage Technologies

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Brochure on Thermal Energy Storage Technologies ( brochure-thermal-energy-storage-technologies )

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Common Applications  Solar thermal power plants  Industrial process heat (heat transformation)  Solar Cooling  Automotive thermal management  Seasonal storage and peak-shifting  Industrial waste heat recovery  Buffer storage in district heating  Domestic heating, cooling and hot water (Figure 4) Example Applications EERA Joint Program on Energy Storage - SP3 on Thermal Energy Storage Fig. 4. Example of process diagram for the thermochemical storage An example of adsorption TES, is a large scale system for industrial heat recovery, storage and transportation, based on an open adsorption cycle. Figure 5 summarizes the concept, developed at ZAE Bayern laboratories [1]. It consists in recovering heat from an industrial site, by flowing hot air through a zeolite 13X bed. Once the adsorbent material is regenerated, the reactor full of dried zeolite (charged TES) is transported to the site where it is discharged, by flowing humid air through the zeolite bed, thus releasing heat to drive another industrial process. 1. Mobile TES for Industrial application Fig. 5. Mobile adsorption TES for industrial applications. 2. Waste heat sorption storage for space cooling (Prototype) The thermochemical storage prototype developed at ITAE is intended for cold storage starting from waste heat recovery in industrial processes at low temperature (T<100°C). Equipment cooling or space cooling are two examples of the possible applications of the storage. However, the storage is still at lab-scale and therefore there is not a specific application already set [2]. The prototype, shown in Fig. 6, consists of two vacuum chambers, representing the adsorber and the phase changer (working alternatively as condenser and evaporator). Both chambers are realised in AISI316, to avoid corrosion problems; the chamber of the adsorber has a removable cover, in order to change the heat exchangers to be tested, whereas the chamber of the phase changer is entirely welded. Inside the phase changer, 4 commercial fin-and-tube heat exchangers with copper fins and stainless steel tube have been placed. Fig.6. Thermochemical storage installed in the lab References 1. A. Krönauer et al., 2015. 2. V. Palomba et al., 2017. http://eera-es.eu/ Contact JP Energy Storage SP3 - Thermal Energy Storage http://eera-es.eu European Energy Research Alliance (EERA) Rue de Namur, 72 1000 Brussels | Belgium

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