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  4. Efficient Management of Asbestos Waste Through Utilization as Mineral Additives in Portland Cement Production
 
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Efficient Management of Asbestos Waste Through Utilization as Mineral Additives in Portland Cement Production

Type
Journal article
Language
English
Date issued
2024
Author
Durczak, Karol 
Pyzalski, Michał
Sujak, Agnieszka 
Juszczyk, Michał
Sala, Dariusz
Ustinovichius, Leonas
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
PBN discipline
mechanical engineering
Journal
Materials
ISSN
1996-1944
DOI
10.3390/ma17235793
Web address
https://www.mdpi.com/1996-1944/17/23/5793
Volume
17
Number
23
Pages from-to
art, 5793
Abstract (EN)
This article presents research on the effectiveness of utilizing asbestos waste, particularly chrysotile asbestos, in the production of Portland cement. The study aimed to evaluate the feasibility of transforming asbestos cement (Eternit) through thermal treatment and its enrichment with mineral additives, enabling its integration into the clinker synthesis process. Differences in the physicochemical properties of types of cement produced from conventional raw materials and those manufactured using asbestos waste were analyzed. The research findings indicate that the presence of asbestos in cementitious materials leads to a significant mass loss of 29.4% due to thermal decomposition. Chemical analysis revealed the presence of aluminum oxide (Al2O3) and iron oxide (Fe2O3) at levels of 4.10% and 3.54%, respectively, suggesting the formation of brownmillerite, a phase typical of cement clinker. Furthermore, compressive strength tests on asbestos-modified cements demonstrated comparable mechanical properties to reference cement (CEM I), indicating their potential applicability in construction. This study provides essential insights into the mineralogical composition of asbestos cement, which is crucial for developing effective methods for its safe disposal. It represents a significant step toward sustainable asbestos waste management and the promotion of innovative solutions in the construction industry.
Keywords (EN)
  • supplementary cementitious mater...

  • asbestos

  • waste utilization

  • neutralization methods

  • recycling

  • health safety

  • environmental protection

  • sustainable development

  • synthesis and preparation

License
cc-bycc-by CC-BY - Attribution
Open access date
November 26, 2024
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