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Detailed Reference Information |
Sugimoto, A., Inoue, T., Kirtibutr, N. and Abe, T. (1998). Methane oxidation by termite mounds estimated by the carbon isotopic composition of methane. Global Biogeochemical Cycles 12: doi: 10.1029/98GB02266. issn: 0886-6236. |
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Emission rates and carbon isotope ratios of CH4, emitted by workers of termites, and of CH4, emitted from their mounds, were observed in a dry evergreen forest in Thailand to estimate the proportion of CH4 oxidized during emission through the mound. The &dgr;13C of CH4 emitted from a termite mound (-70.9 to -82.4?) was higher than that of CH4 emitted by workers in the mound (-85.4 to -97.1?). Using a fractionation factor (&agr;=0.987) for oxidation of CH4 which was obtained in the incubation experiment, an emission factor defined as (CH4 emitted from a termite mound/CH4 produced by termites) was calculated. The emission factor obtained in each termite mound was nearly zero for Macrotermes (fungus-growing termites), of which the nest has a thick soil wall and subterrannean termites, and 0.17 to 0.47 for Termitinae (small-mound-making termites). Global CH4 emission by termites was estimated on the basis of the CH4 emission rates by workers and termite biomass with the emission factors. The calculated result was 1.5 to 7.4 Tg/y (0.3 to 1.3% of total source), which is considerably smaller than the estimate by the IPCC [1994]. ¿ 1998 American Geophysical Union |
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Abstract |
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Keywords
Oceanography, Biological and Chemical, Biogeochemical cycles |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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