Selection and performance evaluation of waste and by-product materials for thermal storage applications

Author:

Erregueragui Zineb12,Tizliouine Abdeslam2,Ouhsaine Lahoucine3,Chafi Mohammed4,Omari Lhaj El Hachemi25

Affiliation:

1. National Higher School of Electricity and Mechanics , ENSEM, Hassan II University, 8118 Oasis, Casablanca, Morocco

2. Higher School of Technology of Casablanca LMPGI, , ESTC, Hassan II University, 8112 Oasis, Casablanca, Morocco

3. Abdelmalek Essaâdi University The Laboratory of Energy, , Faculty of Sciences, 93000, Tetouan, Morocco

4. Hassan II University of Casablanca Laboratory of Process and Environmental Engineering, Higher School of Technology, , 8118 Casablanca, Morocco

5. University Hassan II of Casablanca LPMAT, Faculty of Sciences Ain Chock, , 5366 Maarif, Morocco

Abstract

Abstract Recycled materials and by-products could help solve the waste crisis and support the circular economy. The aim of this study was to compare the performance of potentially available wastes and by-products in Morocco to the local rock Gneiss, for use in sensible heat thermal energy storage. A heat transfer model was developed to undertake the benchmark, a control volume approach and an implicit scheme have been used to solve the modelling equations. The study concludes that Gneiss followed by asbestos-containing waste ceramics presented the fastest charging rates and elevated energy and exergy efficiencies, while the demolition wastes showed the highest amount of recovered energy during longer periods of charge and discharge.

Publisher

Oxford University Press (OUP)

Subject

General Environmental Science,Architecture,Civil and Structural Engineering

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