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THERMAL ENERGY STORAGE Outlook

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

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Solid-state thermal storage Solid-state or packed-bed storage involves the use of particulate matter to store heat, and a fluid that runs through the bed to transfer the heat in and out of the system. These systems vary in size, and a range of materials can be used. For example, ceramic bricks are used in households to store heat provided by electric heaters, and beds of rock or concrete can be used at a larger scale to store heat generated using excess electricity from a wind farm. Solid-state technologies are simple, relatively cheap and scalable. They are used in buildings that usually require only low-grade heat. Novel materials and systems are being developed for industry and power generation applications that require higher temperature outputs. Other natural and artificial substances have been studied as storage media, such as rocks, concrete and ceramic bricks. At higher temperatures, refractory bricks based on oxides (silica, alumina, magnesia and iron oxide feolite), carbonates (e.g. magnesite) and their mixtures are used commercially. Other materials have been considered, such as concrete with enhanced thermal properties (Xu and Chung, 2000) and industrial waste ceramic material such as Cofalit (Calvet et al., 2013). Thermal power station Image credit: Shutterstock THERMAL ENERGY STORAGE 55

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THERMAL ENERGY STORAGE Outlook

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