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Thermal treatment of composite wastes for energy recovery

Termički tretman otpadnih kompozitnih materijala u cilju dobijanja energije

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2020
0351-94652001013S.pdf (157.9Kb)
Authors
Stamenović, Marina
Kovačević, Danijela
Alivojvodić, Vesna
Putić, Slaviša
Article (Published version)
Metadata
Show full item record
Abstract
The expression waste-to-energy technologies is increasingly being used regarding waste reduction and utilization. Waste-to-energy technologies are procedures used to generate different forms of energy starting from a waste source. Considering that this pap waste, the previously mentioned procedures can be divided into mechanical, thermal and chemical treatment of composite waste. Thermal treatment processes provide a wide range of options to produce electricity, heat, oils, gases, fuels and chemicals starting waste. Some procedures are used for commercial purposes, while many are still being developed in laboratories or semi-industrial plants. The presented paper is focused to briefly review recent ld of thermal treatment of composite waste materials.
Proizvodnja energije iz otpadnih materijala primenom različitih tehnologija je jedan od načina ponovne upotrebe i ujedno redukcije otpadnih materijala. Sve ove tehnologije reciklaže imaju jednu zajedničku karakteristiku - dobijanje energije u različitim oblicima, polazeci od otpadnih materijala kao sirovina. Imajuci u vidu da je ovaj rad fokusiran na kompozitne otpadne materijale, pomenute procedure se mogu podeliti na mehaničke, termičke i hemijske tretmane kompozithog otpada. Termički tretmanima kompozitnog otpada je moguća proizvodnja energije u vidu eliktriciteta, toplote, ulja, gasova, goriva i različitih hemijskih jedinjenja. Pojedine procedure su uvedene u komercijalnu upotrebu, dok se veliki broj njih trenutno razvija u laboratorijskim ili poluindustrijskim postrojenjima. U radu je ukratko dat prikaz trenutnog stanja i inovacija u oblasti termičkog tretmana otpadnih kompozitnih materijala.
Keywords:
composite waste / recycling / thermal treatment / fibres / energy / otpadni kompoziti / recikliranje / termički tretman / vlakna / energija
Source:
Zaštita materijala, 2020, 61, 1, 13-18
Publisher:
  • Engineering Society for Corrosion, Belgrade, Serbia

DOI: 10.5937/zasmat2001013S

ISSN: 0351-9465

[ Google Scholar ]
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/4556
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Stamenović, Marina
AU  - Kovačević, Danijela
AU  - Alivojvodić, Vesna
AU  - Putić, Slaviša
PY  - 2020
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/4556
AB  - The expression waste-to-energy technologies is increasingly being used regarding waste reduction and utilization. Waste-to-energy technologies are procedures used to generate different forms of energy starting from a waste source. Considering that this pap waste, the previously mentioned procedures can be divided into mechanical, thermal and chemical treatment of composite waste. Thermal treatment processes provide a wide range of options to produce electricity, heat, oils, gases, fuels and chemicals starting waste. Some procedures are used for commercial purposes, while many are still being developed in laboratories or semi-industrial plants. The presented paper is focused to briefly review recent ld of thermal treatment of composite waste materials.
AB  - Proizvodnja energije iz otpadnih materijala primenom različitih tehnologija je jedan od načina ponovne upotrebe i ujedno redukcije otpadnih materijala. Sve ove tehnologije reciklaže imaju jednu zajedničku karakteristiku - dobijanje energije u različitim oblicima, polazeci od otpadnih materijala kao sirovina. Imajuci u vidu da je ovaj rad fokusiran na kompozitne otpadne materijale, pomenute procedure se mogu podeliti na mehaničke, termičke i hemijske tretmane kompozithog otpada. Termički tretmanima kompozitnog otpada je moguća proizvodnja energije u vidu eliktriciteta, toplote, ulja, gasova, goriva i različitih hemijskih jedinjenja. Pojedine procedure su uvedene u komercijalnu upotrebu, dok se veliki broj njih trenutno razvija u laboratorijskim ili poluindustrijskim postrojenjima. U radu je ukratko dat prikaz trenutnog stanja i inovacija u oblasti termičkog tretmana otpadnih kompozitnih materijala.
PB  - Engineering Society for Corrosion, Belgrade, Serbia
T2  - Zaštita materijala
T1  - Thermal treatment of composite wastes for energy recovery
T1  - Termički tretman otpadnih kompozitnih materijala u cilju dobijanja energije
EP  - 18
IS  - 1
SP  - 13
VL  - 61
DO  - 10.5937/zasmat2001013S
ER  - 
@article{
author = "Stamenović, Marina and Kovačević, Danijela and Alivojvodić, Vesna and Putić, Slaviša",
year = "2020",
abstract = "The expression waste-to-energy technologies is increasingly being used regarding waste reduction and utilization. Waste-to-energy technologies are procedures used to generate different forms of energy starting from a waste source. Considering that this pap waste, the previously mentioned procedures can be divided into mechanical, thermal and chemical treatment of composite waste. Thermal treatment processes provide a wide range of options to produce electricity, heat, oils, gases, fuels and chemicals starting waste. Some procedures are used for commercial purposes, while many are still being developed in laboratories or semi-industrial plants. The presented paper is focused to briefly review recent ld of thermal treatment of composite waste materials., Proizvodnja energije iz otpadnih materijala primenom različitih tehnologija je jedan od načina ponovne upotrebe i ujedno redukcije otpadnih materijala. Sve ove tehnologije reciklaže imaju jednu zajedničku karakteristiku - dobijanje energije u različitim oblicima, polazeci od otpadnih materijala kao sirovina. Imajuci u vidu da je ovaj rad fokusiran na kompozitne otpadne materijale, pomenute procedure se mogu podeliti na mehaničke, termičke i hemijske tretmane kompozithog otpada. Termički tretmanima kompozitnog otpada je moguća proizvodnja energije u vidu eliktriciteta, toplote, ulja, gasova, goriva i različitih hemijskih jedinjenja. Pojedine procedure su uvedene u komercijalnu upotrebu, dok se veliki broj njih trenutno razvija u laboratorijskim ili poluindustrijskim postrojenjima. U radu je ukratko dat prikaz trenutnog stanja i inovacija u oblasti termičkog tretmana otpadnih kompozitnih materijala.",
publisher = "Engineering Society for Corrosion, Belgrade, Serbia",
journal = "Zaštita materijala",
title = "Thermal treatment of composite wastes for energy recovery, Termički tretman otpadnih kompozitnih materijala u cilju dobijanja energije",
pages = "18-13",
number = "1",
volume = "61",
doi = "10.5937/zasmat2001013S"
}
Stamenović, M., Kovačević, D., Alivojvodić, V.,& Putić, S.. (2020). Thermal treatment of composite wastes for energy recovery. in Zaštita materijala
Engineering Society for Corrosion, Belgrade, Serbia., 61(1), 13-18.
https://doi.org/10.5937/zasmat2001013S
Stamenović M, Kovačević D, Alivojvodić V, Putić S. Thermal treatment of composite wastes for energy recovery. in Zaštita materijala. 2020;61(1):13-18.
doi:10.5937/zasmat2001013S .
Stamenović, Marina, Kovačević, Danijela, Alivojvodić, Vesna, Putić, Slaviša, "Thermal treatment of composite wastes for energy recovery" in Zaštita materijala, 61, no. 1 (2020):13-18,
https://doi.org/10.5937/zasmat2001013S . .

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