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Development of Sensible Heat Storage Materials Using Sand, Clay and Coal Bottom Ash

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dc.contributor.author Bagre, Boubou
dc.contributor.author Muritala, Ibrahim Kolawole
dc.contributor.author Daho, Tizane
dc.contributor.author Boukar, Makinta
dc.contributor.author Gounkaou, Yomi Woro
dc.contributor.author Shari, Babajide Epe
dc.contributor.author Ndiaye, Aissatou
dc.contributor.author Bere, Antoine
dc.contributor.author Adamou, Rabani
dc.date.accessioned 2026-09-16T14:03:54Z
dc.date.available 2026-09-16T14:03:54Z
dc.date.issued 2022-12-29
dc.identifier.citation Bagre, B., Muritala, I.K., Daho, T., Boukar, M., Gounkaou, Y.W., Shari, B.E., Ndiaye, A., Bere, A. and Rabani, A. (2022) Development of Sensible Heat Storage Materials Using Sand, Clay and Coal Bottom Ash. Materials Sciences and Applications , 13, 603-626. https://doi.org/10.4236/msa.2022.1312038 en_US
dc.identifier.uri http://197.159.135.214/jspui/handle/123456789/1358
dc.description A Publication submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Abdou Moumouni, Niger in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Energy en_US
dc.description.abstract In this paper, the mechanical and thermal properties of a sand-clay ceramic with additives coal bottom ash (CBA) waste from incinerator coal power plant are investigated to develop an alternative material for thermal energy storage (TES). Ceramic balls are developed at 1000˚C and 1060˚C using sintering or firing method. The obtained ceramics were compressed with a compression machine and thermally analyse using Decagon devise KD2 Pro thermal analyser. A muffle furnace was also used for thermal cycling at 610˚C. It was found that the CBA increased the porosity, which resulted in the increase of the axial tensile strength reaching 3.5 MPa for sand-clay and ash ceramic. The ceramic balls with the required tensile strength for TES were selected. Their volumetric heat capacity, and thermal conductivity range respectively from 2.4075 MJ·m−3·˚C−1 to 3.426 MJ·m−3·˚C−1 and their thermal conductivity from 0.331 Wm−1·K−1, to 1.014 Wm−1·K−1 depending on sand origin, size and firing temperature. The selected formulas have good thermal stability because the most fragile specimens after 60 thermal cycles did not present any cracks. These properties allow envisioning the use of the ceramic balls developed as filler material for thermocline thermal energy storage (structured beds) in Concentrating Solar Power plants. And for other applications like solar cooker and solar dryer. en_US
dc.description.sponsorship The Federal Ministry of Research, Technology and Space (BMFTR) en_US
dc.language.iso en en_US
dc.publisher WASCAL en_US
dc.subject Ceramic Ball en_US
dc.subject Sand en_US
dc.subject Clay en_US
dc.subject Coal Bottom Ash en_US
dc.subject Thermal Energy Storage Material en_US
dc.subject Thermocline en_US
dc.subject Concentrating Solar Power Plant en_US
dc.title Development of Sensible Heat Storage Materials Using Sand, Clay and Coal Bottom Ash en_US
dc.type Article en_US


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