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Measures and methods for NOx reduction from glass-melting furnaces

Mere i metode za smanjenja emisije oksida azota iz peći za topljenje stakla

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2011
1825.pdf (2.870Mb)
Authors
Nikolić, Jelena D.
Tošić, Mihajlo B.
Živanović, Vladimir D.
Matijašević, Srđan D.
Živanović, Deana B.
Grujić, Snežana
Ždrale, Sonja V.
Article (Published version)
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Abstract
The nitrogen oxides emitted to atmosphere effect significantly on formation of photochemical smog, acidic rains and destroying of ozone shell of the earth. Therefore, the regulations for limited emission of nitrogen oxides to atmosphere become very strict. Glass manufacturing is a high-temperature, energy-intensive activity, because of the high temperature NOx emissions are extremely high. NOx emissions could be reduced by primary process modifications measures end secondary post-combustion measures. Primary process modifications are usually based on the following techniques: stoichiometric combustion and advanced burners systems, staged combustion (air- or fuelstaged), recircylation of flue gasses.
Razvojem tehnike i tehnologije javlja se potreba za većom proizvodnjom energije. Iako se danas uvode u upotrebu i drugi izvori energije, još uvek je najzastupljenije dobijanje energije u procesu sagorevanja goriva. Zbog visokih temperatura koje nastaju pri sagorevanje dolazi do velike emisije NOx oksida. U ovom radu opisane su mere i metode kojima je moguće smanjiti emisiju NOx u procesima dobijanja stakla.
Keywords:
NOx / burners / glass melting furnace / emission / oksidi azota / peći za topljenje stakla / emisija
Source:
Tehnika, 2011, 66, 3, 393-398
Publisher:
  • Savez inženjera i tehničara Srbije, Beograd

ISSN: 0040-2176

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_technorep_1828
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/1828
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Nikolić, Jelena D.
AU  - Tošić, Mihajlo B.
AU  - Živanović, Vladimir D.
AU  - Matijašević, Srđan D.
AU  - Živanović, Deana B.
AU  - Grujić, Snežana
AU  - Ždrale, Sonja V.
PY  - 2011
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/1828
AB  - The nitrogen oxides emitted to atmosphere effect significantly on formation of photochemical smog, acidic rains and destroying of ozone shell of the earth. Therefore, the regulations for limited emission of nitrogen oxides to atmosphere become very strict. Glass manufacturing is a high-temperature, energy-intensive activity, because of the high temperature NOx emissions are extremely high. NOx emissions could be reduced by primary process modifications measures end secondary post-combustion measures. Primary process modifications are usually based on the following techniques: stoichiometric combustion and advanced burners systems, staged combustion (air- or fuelstaged), recircylation of flue gasses.
AB  - Razvojem tehnike i tehnologije javlja se potreba za većom proizvodnjom energije. Iako se danas uvode u upotrebu i drugi izvori energije, još uvek je najzastupljenije dobijanje energije u procesu sagorevanja goriva. Zbog visokih temperatura koje nastaju pri sagorevanje dolazi do velike emisije NOx oksida. U ovom radu opisane su mere i metode kojima je moguće smanjiti emisiju NOx u procesima dobijanja stakla.
PB  - Savez inženjera i tehničara Srbije, Beograd
T2  - Tehnika
T1  - Measures and methods for NOx reduction from glass-melting furnaces
T1  - Mere i metode za smanjenja emisije oksida azota iz peći za topljenje stakla
EP  - 398
IS  - 3
SP  - 393
VL  - 66
UR  - https://hdl.handle.net/21.15107/rcub_technorep_1828
ER  - 
@article{
author = "Nikolić, Jelena D. and Tošić, Mihajlo B. and Živanović, Vladimir D. and Matijašević, Srđan D. and Živanović, Deana B. and Grujić, Snežana and Ždrale, Sonja V.",
year = "2011",
abstract = "The nitrogen oxides emitted to atmosphere effect significantly on formation of photochemical smog, acidic rains and destroying of ozone shell of the earth. Therefore, the regulations for limited emission of nitrogen oxides to atmosphere become very strict. Glass manufacturing is a high-temperature, energy-intensive activity, because of the high temperature NOx emissions are extremely high. NOx emissions could be reduced by primary process modifications measures end secondary post-combustion measures. Primary process modifications are usually based on the following techniques: stoichiometric combustion and advanced burners systems, staged combustion (air- or fuelstaged), recircylation of flue gasses., Razvojem tehnike i tehnologije javlja se potreba za većom proizvodnjom energije. Iako se danas uvode u upotrebu i drugi izvori energije, još uvek je najzastupljenije dobijanje energije u procesu sagorevanja goriva. Zbog visokih temperatura koje nastaju pri sagorevanje dolazi do velike emisije NOx oksida. U ovom radu opisane su mere i metode kojima je moguće smanjiti emisiju NOx u procesima dobijanja stakla.",
publisher = "Savez inženjera i tehničara Srbije, Beograd",
journal = "Tehnika",
title = "Measures and methods for NOx reduction from glass-melting furnaces, Mere i metode za smanjenja emisije oksida azota iz peći za topljenje stakla",
pages = "398-393",
number = "3",
volume = "66",
url = "https://hdl.handle.net/21.15107/rcub_technorep_1828"
}
Nikolić, J. D., Tošić, M. B., Živanović, V. D., Matijašević, S. D., Živanović, D. B., Grujić, S.,& Ždrale, S. V.. (2011). Measures and methods for NOx reduction from glass-melting furnaces. in Tehnika
Savez inženjera i tehničara Srbije, Beograd., 66(3), 393-398.
https://hdl.handle.net/21.15107/rcub_technorep_1828
Nikolić JD, Tošić MB, Živanović VD, Matijašević SD, Živanović DB, Grujić S, Ždrale SV. Measures and methods for NOx reduction from glass-melting furnaces. in Tehnika. 2011;66(3):393-398.
https://hdl.handle.net/21.15107/rcub_technorep_1828 .
Nikolić, Jelena D., Tošić, Mihajlo B., Živanović, Vladimir D., Matijašević, Srđan D., Živanović, Deana B., Grujić, Snežana, Ždrale, Sonja V., "Measures and methods for NOx reduction from glass-melting furnaces" in Tehnika, 66, no. 3 (2011):393-398,
https://hdl.handle.net/21.15107/rcub_technorep_1828 .

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