TY - JOUR
T1 - Optimization of preparation of CO3O4 by microwave calcination from basic cobalt carbonate
AU - Liu, Bingguo
AU - Peng, Jinhui
AU - Zhang, Libo
AU - Zhou, Junwen
AU - Xia, Hongying
AU - Guo, Shenhui
N1 - Publisher Copyright:
© 2016 International Microwave Power Institute.
PY - 2016/4/2
Y1 - 2016/4/2
N2 - The parameters to prepare of Co3O4 by microwave calcination from basic cobalt carbonate were optimized based on the thermal gravity analysis–differential thermal gravity (TG–DTG) using with central composite concept of response surface methodology. A quadratic equation model for decomposition rate was built and rising behaviour of basic cobalt carbonate in fields of microwave and effects of main factors and their corresponding relationships on response were obtained. The results showed that a sample 20% addition of Co3O4 with the basic cobalt carbonate has ability to strongly absorb microwave energy, and the calcination temperature and calcination time significantly affect on the decomposition rate of basic cobalt carbonate in this range studied. The decomposition rate of basic cobalt carbonate was 99.56% under optimum calcination temperature 642.65 K, and calcination time 8.89 min and 4.34 g, respectively. The validity of the model was confirmed experimentally and the results were satisfactory. Furthermore, the Co3O4 was analysed using X-ray powder diffraction. It was feasible to prepare of Co3O4 by microwave calcination from the basic cobalt carbonate though addition of small amounts cobalt oxide.
AB - The parameters to prepare of Co3O4 by microwave calcination from basic cobalt carbonate were optimized based on the thermal gravity analysis–differential thermal gravity (TG–DTG) using with central composite concept of response surface methodology. A quadratic equation model for decomposition rate was built and rising behaviour of basic cobalt carbonate in fields of microwave and effects of main factors and their corresponding relationships on response were obtained. The results showed that a sample 20% addition of Co3O4 with the basic cobalt carbonate has ability to strongly absorb microwave energy, and the calcination temperature and calcination time significantly affect on the decomposition rate of basic cobalt carbonate in this range studied. The decomposition rate of basic cobalt carbonate was 99.56% under optimum calcination temperature 642.65 K, and calcination time 8.89 min and 4.34 g, respectively. The validity of the model was confirmed experimentally and the results were satisfactory. Furthermore, the Co3O4 was analysed using X-ray powder diffraction. It was feasible to prepare of Co3O4 by microwave calcination from the basic cobalt carbonate though addition of small amounts cobalt oxide.
KW - basic cobalt carbonate
KW - CoO
KW - microwave intensification
KW - Response surface methodology
UR - http://www.scopus.com/inward/record.url?scp=84991720711&partnerID=8YFLogxK
U2 - 10.1080/08327823.2016.1193951
DO - 10.1080/08327823.2016.1193951
M3 - Article
AN - SCOPUS:84991720711
SN - 0832-7823
VL - 50
SP - 138
EP - 150
JO - Journal of Microwave Power and Electromagnetic Energy
JF - Journal of Microwave Power and Electromagnetic Energy
IS - 2
ER -