Šaponjić, Z.

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  • Šaponjić, Z. (1)
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Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills

Kovačević, A.; Marković, Darka; Radoičić, M.; Šaponjić, Z.; Radetić, Maja

(Elsevier Ltd, 2023)

TY  - JOUR
AU  - Kovačević, A.
AU  - Marković, Darka
AU  - Radoičić, M.
AU  - Šaponjić, Z.
AU  - Radetić, Maja
PY  - 2023
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/5559
AB  - Intensified oil exploitation accompanied with frequent oil spills having a detrimental impact on ecosystems are seeking efficient, environmentally and economically feasible solutions. In an attempt to develop an efficient, reusable, biodegradable and cheap sorbent for oil clean-up non-woven sorbents based on recycled jute post-industrial textile waste were fabricated. The influence of area density of non-woven sorbents and hydrophobicity of fibers on overall oil sorption performance was the focus of this research. All sorbents showed a good reusability after five sorption cycles and buoyancy in water even after 24 h independently of sorbent structure. The area density of sorbents and viscosity of studied oils (crude oil, diesel oil and two types of motor oils) highly affected the oil sorption capacity and oil retention. The sorbent with the lowest area density exhibited the best oil sorption performance. The esterification of jute with stearic fatty acid contributed to decrease in water uptake of sorbents but also to negligible change of oil sorption behavior indicating that the structure of the sorbent in this case plays a crucial role.
PB  - Elsevier Ltd
T2  - Journal of Cleaner Production
T1  - Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills
SP  - 135811
VL  - 386
DO  - 10.1016/j.jclepro.2022.135811
ER  - 
@article{
author = "Kovačević, A. and Marković, Darka and Radoičić, M. and Šaponjić, Z. and Radetić, Maja",
year = "2023",
abstract = "Intensified oil exploitation accompanied with frequent oil spills having a detrimental impact on ecosystems are seeking efficient, environmentally and economically feasible solutions. In an attempt to develop an efficient, reusable, biodegradable and cheap sorbent for oil clean-up non-woven sorbents based on recycled jute post-industrial textile waste were fabricated. The influence of area density of non-woven sorbents and hydrophobicity of fibers on overall oil sorption performance was the focus of this research. All sorbents showed a good reusability after five sorption cycles and buoyancy in water even after 24 h independently of sorbent structure. The area density of sorbents and viscosity of studied oils (crude oil, diesel oil and two types of motor oils) highly affected the oil sorption capacity and oil retention. The sorbent with the lowest area density exhibited the best oil sorption performance. The esterification of jute with stearic fatty acid contributed to decrease in water uptake of sorbents but also to negligible change of oil sorption behavior indicating that the structure of the sorbent in this case plays a crucial role.",
publisher = "Elsevier Ltd",
journal = "Journal of Cleaner Production",
title = "Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills",
pages = "135811",
volume = "386",
doi = "10.1016/j.jclepro.2022.135811"
}
Kovačević, A., Marković, D., Radoičić, M., Šaponjić, Z.,& Radetić, M.. (2023). Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills. in Journal of Cleaner Production
Elsevier Ltd., 386, 135811.
https://doi.org/10.1016/j.jclepro.2022.135811
Kovačević A, Marković D, Radoičić M, Šaponjić Z, Radetić M. Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills. in Journal of Cleaner Production. 2023;386:135811.
doi:10.1016/j.jclepro.2022.135811 .
Kovačević, A., Marković, Darka, Radoičić, M., Šaponjić, Z., Radetić, Maja, "Sustainable non-woven sorbents based on jute post-industrial waste for cleaning of oil spills" in Journal of Cleaner Production, 386 (2023):135811,
https://doi.org/10.1016/j.jclepro.2022.135811 . .
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