Kinetics of nitric oxide reduction with alkali metal and alkali earth metal impregnated bamboo activated carbonopen access
- Authors
- Bak, Y.-C.; Choi, J.-H.
- Issue Date
- 2016
- Publisher
- Korean Institute of Chemical Engineers
- Keywords
- Activated carbon; Alkali earth metal; Alkali metal impregnated; Bamboo activated carbon; Ca; K; Mg; Na; NO; TGA
- Citation
- Korean Chemical Engineering Research, v.54, no.5, pp 671 - 677
- Pages
- 7
- Indexed
- SCOPUS
KCI
- Journal Title
- Korean Chemical Engineering Research
- Volume
- 54
- Number
- 5
- Start Page
- 671
- End Page
- 677
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/16755
- DOI
- 10.9713/kcer.2016.54.5.671
- ISSN
- 0304-128X
2233-9558
- Abstract
- The impregnated alkali metal (Na, K), and the alkali earth metal (Ca, Mg) activated carbons were produced from the bamboo activated carbon by soaking method of alkali metals and alkali earth metals solution. The carbonization and activation of raw material was conducted at 900°C. The specific surface area and the pore size distribution of the prepared activated carbons were measured. Also, NO and activated carbon reaction were conducted in a thermogravimetric analyzer in order to use for de-NOx agents of the used activated carbon. Carbon-NO reactions were carried out in the nonisothermal condition (the reaction temperature 20∼850°C, NO 1 kPa) and the isothermal condition (the reaction temperature 600, 650, 700, 750, 800, 850°C, NO 0.1∼1.8 kPa). As results, the specific volume and the surface area of the impregnated alkali bamboo activated carbons were decreased with increasing amounts of the alkali. In the NO reaction, the reaction rate of the impregnated alkali bamboo activated carbons was promoted to compare with that of the bamboo activated carbon [BA] in the order of BA(Ca)> BA(Na)> BA(K)> BA(Mg) > BA. Measured the reaction orders of NO concentration and the activation energy were 0.76[BA], 0.63[BA(Na)], 0.77[BA(K)], 0.42[BA(Ca)], 0.30 [BA(Mg)], and 82.87 kJ/mol[BA], 37.85 kJ/mol[BA(Na)], 69.98 kJ/mol[BA(K)], 33.43 kJ/mol[BA(Ca)], 88.90 kJ/mol [BA(Mg)], respectively.
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