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Removal of toxic metals from industrial sludge by fixing in brick structure

Authorized Users Only
2012
Authors
Arsenović, Milica
Radojević, Zagorka
Stanković, Slavka
Article (Published version)
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Abstract
The aim of this study was to test utilization possibilities of industrial sludge in masonry industry, as well as risk of toxic elements leaching potential. Sludge is generated in a hot-dip galvanizing process after waste water neutralization. This waste is considered to be hazardous due to the presence of toxic elements, which can be fixed within heavy clay matrix after thermal treatment. Relatively large amounts of toxic metals were found in used raw materials, but their leachability reduces to a negligible level after firing at 1020 degrees C. The results show that sludge can be used to produce eco-friendly bricks.
Keywords:
Toxic elements / Thermal treatment / Industrial sludge / Heavy-clay bricks
Source:
Construction and Building Materials, 2012, 37, 7-14
Publisher:
  • Elsevier Sci Ltd, Oxford
Funding / projects:
  • Development and application of multifunctional materials using domestic raw materials in upgraded processing lines (RS-45008)

DOI: 10.1016/j.conbuildmat.2012.07.002

ISSN: 0950-0618

WoS: 000314434400002

Scopus: 2-s2.0-84870216567
[ Google Scholar ]
68
46
URI
http://rims.institutims.rs/handle/123456789/174
Collections
  • Radovi istraživača / Researchers' publications
Institution/Community
Institut za ispitivanje materijala
TY  - JOUR
AU  - Arsenović, Milica
AU  - Radojević, Zagorka
AU  - Stanković, Slavka
PY  - 2012
UR  - http://rims.institutims.rs/handle/123456789/174
AB  - The aim of this study was to test utilization possibilities of industrial sludge in masonry industry, as well as risk of toxic elements leaching potential. Sludge is generated in a hot-dip galvanizing process after waste water neutralization. This waste is considered to be hazardous due to the presence of toxic elements, which can be fixed within heavy clay matrix after thermal treatment. Relatively large amounts of toxic metals were found in used raw materials, but their leachability reduces to a negligible level after firing at 1020 degrees C. The results show that sludge can be used to produce eco-friendly bricks.
PB  - Elsevier Sci Ltd, Oxford
T2  - Construction and Building Materials
T1  - Removal of toxic metals from industrial sludge by fixing in brick structure
EP  - 14
SP  - 7
VL  - 37
DO  - 10.1016/j.conbuildmat.2012.07.002
ER  - 
@article{
author = "Arsenović, Milica and Radojević, Zagorka and Stanković, Slavka",
year = "2012",
abstract = "The aim of this study was to test utilization possibilities of industrial sludge in masonry industry, as well as risk of toxic elements leaching potential. Sludge is generated in a hot-dip galvanizing process after waste water neutralization. This waste is considered to be hazardous due to the presence of toxic elements, which can be fixed within heavy clay matrix after thermal treatment. Relatively large amounts of toxic metals were found in used raw materials, but their leachability reduces to a negligible level after firing at 1020 degrees C. The results show that sludge can be used to produce eco-friendly bricks.",
publisher = "Elsevier Sci Ltd, Oxford",
journal = "Construction and Building Materials",
title = "Removal of toxic metals from industrial sludge by fixing in brick structure",
pages = "14-7",
volume = "37",
doi = "10.1016/j.conbuildmat.2012.07.002"
}
Arsenović, M., Radojević, Z.,& Stanković, S.. (2012). Removal of toxic metals from industrial sludge by fixing in brick structure. in Construction and Building Materials
Elsevier Sci Ltd, Oxford., 37, 7-14.
https://doi.org/10.1016/j.conbuildmat.2012.07.002
Arsenović M, Radojević Z, Stanković S. Removal of toxic metals from industrial sludge by fixing in brick structure. in Construction and Building Materials. 2012;37:7-14.
doi:10.1016/j.conbuildmat.2012.07.002 .
Arsenović, Milica, Radojević, Zagorka, Stanković, Slavka, "Removal of toxic metals from industrial sludge by fixing in brick structure" in Construction and Building Materials, 37 (2012):7-14,
https://doi.org/10.1016/j.conbuildmat.2012.07.002 . .

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