Study Thermal Resistance of γ-Al2O3 at Various Reaction Temperatures via TGA Analysis

The discarded empty aluminium beverage cans can pose a serious environmental contamination issue. Recently, studies are now focusing on reducing and utilising solid wastes which have grown to be a significant environmental concern. Thus, this study focuses on producing γ-Al2O3 from readily available...

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Veröffentlicht in:Materials science forum 2023-03, Vol.1081, p.101-108
Hauptverfasser: Alara, Oluwaseun Ruth, Hamid Nour, Abdurahman, Abdulqawi, M., Bin Mokaizh, Aiman A.
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Sprache:eng
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Zusammenfassung:The discarded empty aluminium beverage cans can pose a serious environmental contamination issue. Recently, studies are now focusing on reducing and utilising solid wastes which have grown to be a significant environmental concern. Thus, this study focuses on producing γ-Al2O3 from readily available aluminium garbage cans using a Sol-gel technique and analysing its thermal properties using TGA analysis. The effect of the reaction temperatures was further investigated to comprehend the synthesis of alumina at (room temperature, 50 °C, and 70 °C) at a fixed aging duration of 12 h. Experimental findings demonstrated the potential of producing γ-Al2O3 from used aluminium cans, which may then be used as sustainable catalysts and catalytic supports for a variety of applications. The results showed that all the synthesised alumina had a good result with a maximum weight loss less than 5%; this reflected its strong stability. The alumina that was created at 70 °C reaction temperature recorded the lowest weight loss and the highest residue at 2.78% and 97.22%, respectively.
ISSN:0255-5476
1662-9752
1662-9752
DOI:10.4028/p-vu45d5