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Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area

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2007
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Аутори
Stevanović, Suzana
Zeljković, Vladimir
Obradović, Nina
Labus, Nebojša
Остала ауторства
Ristić, Momčilo M.
Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
Reduction of the specific surface area of porous ZnO during the sintering process was studied. ZnO powder was sintered at temperatures from 673 K to 1173 K. The decrease in the specific surface area was observed as a function of temperature and sintering time. Two different models were involved in order to define the appropriate parameters. The Arrhenius equation was used to give information on the activation energy of sintering. The LSE method was applied for determining optimum parameter values.
Кључне речи:
sintering / kinetics / specific surface area / ZnO / zinc oxide
Извор:
Science of Sintering, 2007, 39, 3, 259-265
Издавач:
  • Belgrade : International Institute for the Science of Sintering
Пројекти:
  • Проучавање међузависности у тријади ''синтеза-структура-својства'' за функционалне материјала (RS-142011)

DOI: 10.2298/SOS0703259S

ISSN: 1820-7413 (Online); 0350-820X (Print)

WoS: 000254091200006

Scopus: 2-s2.0-68949216383
[ Google Scholar ]
2
2
URI
http://dais.sanu.ac.rs/123456789/209
Колекције
  • ITN SANU - Opšta kolekcija / ITS SASA - General collection
Институција
Институт техничких наука САНУ / Institute of Technical Sciences of SASA
TY  - JOUR
AU  - Stevanović, Suzana
AU  - Zeljković, Vladimir
AU  - Obradović, Nina
AU  - Labus, Nebojša
PY  - 2007
UR  - http://dais.sanu.ac.rs/123456789/209
AB  - Reduction of the specific surface area of porous ZnO during the sintering process was studied. ZnO powder was sintered at temperatures from 673 K to 1173 K. The decrease in the specific surface area was observed as a function of temperature and sintering time. Two different models were involved in order to define the appropriate parameters. The Arrhenius equation was used to give information on the activation energy of sintering. The LSE method was applied for determining optimum parameter values.
PB  - Belgrade : International Institute for the Science of Sintering
T2  - Science of Sintering
T1  - Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area
SP  - 259
EP  - 265
VL  - 39
IS  - 3
DO  - 10.2298/SOS0703259S
ER  - 
@article{
author = "Stevanović, Suzana and Zeljković, Vladimir and Obradović, Nina and Labus, Nebojša",
year = "2007",
url = "http://dais.sanu.ac.rs/123456789/209",
abstract = "Reduction of the specific surface area of porous ZnO during the sintering process was studied. ZnO powder was sintered at temperatures from 673 K to 1173 K. The decrease in the specific surface area was observed as a function of temperature and sintering time. Two different models were involved in order to define the appropriate parameters. The Arrhenius equation was used to give information on the activation energy of sintering. The LSE method was applied for determining optimum parameter values.",
publisher = "Belgrade : International Institute for the Science of Sintering",
journal = "Science of Sintering",
title = "Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area",
pages = "259-265",
volume = "39",
number = "3",
doi = "10.2298/SOS0703259S"
}
Stevanović S, Zeljković V, Obradović N, Labus N. Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area. Science of Sintering. 2007;39(3):259-265
Stevanović, S., Zeljković, V., Obradović, N.,& Labus, N. (2007). Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area.
Science of SinteringBelgrade : International Institute for the Science of Sintering., 39(3), 259-265.
https://doi.org/10.2298/SOS0703259S
Stevanović Suzana, Zeljković Vladimir, Obradović Nina, Labus Nebojša, "Investigation of sintering kinetics of ZnO by observing reduction of the specific surface area" 39, no. 3 (2007):259-265,
https://doi.org/10.2298/SOS0703259S .

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