Articles | Volume 8, issue 2
https://doi.org/10.5194/bg-8-329-2011
https://doi.org/10.5194/bg-8-329-2011
Research article
 | 
14 Feb 2011
Research article |  | 14 Feb 2011

Relation between methanogenic archaea and methane production potential in selected natural wetland ecosystems across China

D. Y. Liu, W. X. Ding, Z. J. Jia, and Z. C. Cai

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Cited articles

Altor, A. E. and Mitsch, W. J.: Methane flux from created riparian marshes: Relationship to intermittent versus continuous inundation and emergent macrophytes, Ecol. Eng., 28, 224–234, 2006.
Avery, G. B., Shannon, R. D., White, J. R., Martens, C. S., and Alperin, M. J.: Effect of seasonal changes in the pathways of methanogenesis on the δ13C values of pore water methane in a Michigan peatland, Global Biogeochem. Cycl., 13, 475–484, 1999.
Avery, G. B., Shannon, R. D., White, J. R., Martens, C. S., and Alperin, M. J.: Controls on methane production in a tidal freshwater estuary and a peatland: methane production via acetate fermentation and CO2 reduction, Biogeochemistry, 62, 19–37, 2003.
Bartlett, K. B., Crill, P. M., Sass, R. L., Harriss, R. C., and Dise, N. B.: Methane emissions from tundra environments in the Yukon–Kuskokwim Delta, Alaska, J. Geophys. Res., 97, 16645–16660, 1992.
Bergman, I., Klarqvist, M., and Nilsson, M.: Seasonal variation in rates of methane production from peat of various botanical origins: effects of temperature and substrate quality, FEMS Microbiol. Ecol., 33, 181–189, 2000.
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