Methane emissions from wetlands: biogeochemical, microbial, and modeling perspectives from local to global scales

作者: Scott D. Bridgham , Hinsby Cadillo-Quiroz , Jason K. Keller , Qianlai Zhuang

DOI: 10.1111/GCB.12131

关键词:

摘要: Understanding the dynamics of methane ( CH 4 ) emissions is of paramount importance because CH 4 has 25 times the global warming potential of carbon dioxide ( CO 2 ) and is …

参考文章(250)
E. L. Hodson, B. Poulter, N. E. Zimmermann, C. Prigent, J. O. Kaplan, The El Nino-Southern Oscillation and wetland methane interannual variability Geophysical Research Letters. ,vol. 38, ,(2011) , 10.1029/2011GL046861
A. Kitoh, P. Friedlingstein, S. C. B. Raper, J. M. Gregory, R. Knutti, J. M. Murphy, T. F. Stocker, A. J. Weaver, G.A. Meehl, Z. C. Zhao, W. D. Collins, A. Noda, I. G. Watterson, T. Gaye, Global climate projections Cambridge University Press. ,(2007)
Kevin R. Sowers, James G. Ferry, Methanogenesis in the Marine Environment Encyclopedia of Environmental Microbiology. ,(2003) , 10.1002/0471263397.ENV226
Steven J. Blazewicz, Dorthe G. Petersen, Mark P. Waldrop, Mary K. Firestone, Anaerobic oxidation of methane in tropical and boreal soils: Ecological significance in terrestrial methane cycling Journal of Geophysical Research. ,vol. 117, ,(2012) , 10.1029/2011JG001864
Derek R. Lovley, Elizabeth J. P. Phillips, Organic matter mineralization with reduction of ferric iron in anaerobic sediments. Applied and Environmental Microbiology. ,vol. 51, pp. 683- 689 ,(1986) , 10.1128/AEM.51.4.683-689.1986