Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite

Li, L. ; Tan, Z.-C. ; Meng, S.-H. ; Wang, S.-D. ; Wu, D.-Y.
Springer
Published 2000
ISSN:
1572-8943
Keywords:
coal-burning additive ; combustion ; graphite ; kinetics
Source:
Springer Online Journal Archives 1860-2000
Topics:
Chemistry and Pharmacology
Notes:
Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
Type of Medium:
Electronic Resource
URL:
_version_ 1798296417590050818
autor Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
autorsonst Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
book_url http://dx.doi.org/10.1023/A:1026769323844
datenlieferant nat_lic_papers
hauptsatz hsatz_simple
identnr NLM195017161
issn 1572-8943
journal_name Journal of thermal analysis and calorimetry
materialart 1
notes Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
package_name Springer
publikationsjahr_anzeige 2000
publikationsjahr_facette 2000
publikationsjahr_intervall 7999:2000-2004
publikationsjahr_sort 2000
publisher Springer
reference 62 (2000), S. 681-685
schlagwort coal-burning additive
combustion
graphite
kinetics
search_space articles
shingle_author_1 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
shingle_author_2 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
shingle_author_3 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
shingle_author_4 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
shingle_catch_all_1 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
coal-burning additive
combustion
graphite
kinetics
coal-burning additive
combustion
graphite
kinetics
Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
1572-8943
15728943
Springer
shingle_catch_all_2 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
coal-burning additive
combustion
graphite
kinetics
coal-burning additive
combustion
graphite
kinetics
Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
1572-8943
15728943
Springer
shingle_catch_all_3 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
coal-burning additive
combustion
graphite
kinetics
coal-burning additive
combustion
graphite
kinetics
Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
1572-8943
15728943
Springer
shingle_catch_all_4 Li, L.
Tan, Z.-C.
Meng, S.-H.
Wang, S.-D.
Wu, D.-Y.
Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
coal-burning additive
combustion
graphite
kinetics
coal-burning additive
combustion
graphite
kinetics
Abstract The catalytic and accelerating effects of three coal-burning additives (CBA) on the burning of graphite were studied with the help of thermogravimetric (TG) analysis. The kinetic study on the catalytic oxidation of the graphite doped with CBA was carried out and the results were presented. The results show that the CBA can change the carbon oxidation/combustion course by catalytic action and change the activation energy, thus improving the combustion efficiency.
1572-8943
15728943
Springer
shingle_title_1 Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
shingle_title_2 Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
shingle_title_3 Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
shingle_title_4 Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
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source_archive Springer Online Journal Archives 1860-2000
timestamp 2024-05-06T09:51:46.655Z
titel Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
titel_suche Kinetic Study of the Accelerating Effect of Coal-burning Additives on the Combustion of Graphite
topic V
uid nat_lic_papers_NLM195017161