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Alteration Analysis of Refractories Bricks Used in Industrial Horizontal Anodes Baking Furnace

This study analyses the alteration of refractory bricks after 96 baking cycles of anodes baking furnace. A decrease of compressive strength from 48.45 to 32 MPa, respectively, for unused and used bricks were observed. The bulk density obtained by mercury intrusion porosimeter method decreased from 2...

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Bibliographic Details
Published in:Arabian journal for science and engineering (2011) 2023-12, Vol.48 (12), p.16137-16150
Main Authors: Tankeu, Jeanne Solange Ntchayi, Gnamsi, Guy Molay Tchapga, Tchamba, Arlin Bruno, Ninla, Patrick Lemougna, Kamseu, Elie, Guidana, Marcel, Nkeng, George Elambo, Kausik, Dana, Mbessa, Michel, Njopwouo, Daniel
Format: Article
Language:English
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Summary:This study analyses the alteration of refractory bricks after 96 baking cycles of anodes baking furnace. A decrease of compressive strength from 48.45 to 32 MPa, respectively, for unused and used bricks were observed. The bulk density obtained by mercury intrusion porosimeter method decreased from 2.48 to 2.38 g/cm 3 for unused and used bricks; while the bulk density by archimedes method increased from 2.29 to 2.49 g/cm 3 . The water absorption by Archimedes method is decreased from 6.65 to 5.05 wt.%. While the total porosity obtained by mercury intrusion porosimeter increased from 15.41 to 17.21 wt.% for unused and used bricks. In the same way the total cumulative pore increased from 62.05 to 72.35 mm 3 /g. While the average pore radius decreased from 5.65 to 1.06 µm, respectively, for unused and used brick. The anode side of brick is deterioted rapidly than hot side of brick. The instrusion porosimetry method seems to be the best method to characterize bulk density and porosimetry of refractory bricks than Archimedes method. Mullite peak seems to be not change, suggesting that a very compacted brick with high mullite content seems to be the best matrix for bricks in anode baking furnace. Silica corrosion is mostly affected in refractory brick than alumina in anodes baking furnace.
ISSN:2193-567X
1319-8025
2191-4281
DOI:10.1007/s13369-023-08089-w