THERMAL ENERGY STORAGE Outlook

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THERMAL ENERGY STORAGE Outlook ( thermal-energy-storage-outlook )

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Buildings Thermal batteries based on simple TTES, solid-state or more advanced PCM technologies can be used with or without heat pumps to electrify heat. Water TTES is widely used across the world for storing heat in buildings, while UTES is used in various cases in smaller-scale installations. PCM and solid-state thermal batteries and ice storage that replaces air-conditioning units are proven technologies, but have only been deployed on a relatively minor scale. Thermochemical technologies are also being investigated and could act as a form of distributed seasonal storage (Figure 11). PCM-based systems have been proven to generate savings for consumers compared to gas-powered boilers, and should be the focus of more attention. Trials of PCM thermal batteries combined with energy management systems are taking place. They could demonstrate how such batteries can use off-peak power to decarbonise heat and save consumers money. Materials are also being developed with improved thermal properties and corrosion resistance for use in tank and solid-state TES technologies; this will help to improve efficiency up to 90%, while enhanced innovations in integration and control systems will improve their cost-effectiveness. By 2030 cost reductions and technical improvements in next-generation high- and low-temperature PCMs and composite phase-change materials (cPCMs) could help increase the deployment of latent thermal storage in buildings. On a longer-term basis research and development (R&D) activities are foreseen focusing on realising material and system improvements in thermochemical TES technologies, which could see a move into the demonstration stage. Thermal batteries storing off-peak power can help to decarbonise heat and save consumers money. 30 INNOVATION OUTLOOK

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