Alford, D.P., Delaune, R.D., and Lindau, C.W., 1997. Methane from

advertisement
Alford, D.P., Delaune, R.D., and Lindau, C.W., 1997. Methane from Mississippi river
deltaic plain wetlands, Biogeochemistry, 37, 227-236.
Amoroux, D., Roberts, G., Rapsomanikisand, S., and Andreae, M.O., 2002. Biogenic
gas (CH4, N2O, DMS) emission to the atmosphere from near-shore and shelf
waters of the north-western Black Sea, Estuar. Coast. Shelf S., 54, 575-587.
Bange, H.W., Rapsomanikis, S., and Andreae, M.O., 1996. The Aegean Sea as a source
of atmospheric nitrous oxide and methane, Mar. Chem.., 53, 41-49.
Bange, H.W., Dahlke, S., Ramesh, R., Meyer-Reil, L.-A. Rapsomanikis, S., and
Andreae, M.O., 1998. Seasonal study of methane and nitrous oxide in the coastal
waters of the southern Baltic Sea, Estuar. Coast. Shelf S., 47, 807-817.
Bartlett, K.B., Harriss, R.C., and Sebacher, D.I., 1985. Methane flux from coastal salt
marshes, J. Geophys. Res. 90, 5710-5720.
Bartlett, K.B., Bartlett, D.S., Harriss, R.C., and Sebacher, D.L., 1987. Methane
emissions along a salt marsh salinity gradient, Biogeochemistry, 4, 183-202.
Bartlett, K.B., Crill, P.M., Sebacher, D.I., Harris, R.C., Wilson, J.O., and Melack, J.M.,
1988. Methane flux from the central Amazonian floodplain, J. Geophys. Res.,
39, 1571-1582.
Bartlett, K.B. and Harris, R.C., 1993. Review and assessment of methane emissions
from wetlands, Chemosphere, 26, 261-320.
Bastviken, D., Ejlerstsson, J., and Tranvik, L., 2002. Measurement of methane oxidation
in lakes - A comparison of methods, Environm. Sci. Technol., 36, 3354-3361.
Bastviken, D., Cole, J., Pace, M., and Tranvik, L., 2004. Methane emissions from lakes:
Dependence of lake characteristics, two regional assessments, and a global
estimate, Global Biogeochem. Cy., 18, GB 4009, doi: 10.1029/2004GB002238.
Bates, T.S., Kelly, K.C., Johson, J.E., and Gammon, R.H., 1996. A reevaluation of the
open ocean source of methane to the atmosphere, J. Geophys. Res., 101, 69536961.
Berner, U., Poggenburg, J., Faber., E., Quadfaser, P., and Frische, A., 2003. Methane in
ocean waters of the Bay of Bengal: its sources and exchange with the
atmosphere, Depp-Sea Res. Pt II, 50, 925-950.
Bianchi, T.S., Freer, M.E., and Wetzel, R.G., 1996. Temporal and spatial variability,
and the role of dissolved organic carbon (DOC) in methane fluxes from the
Sabine River Floodplain (Southeast Texas, U.S.A.), Arch. Hydrobiol., 136, 261287.
Biswas, H., Mukhopadhyay, S.K., Sen, S., and Jana, T.K., 2007. Spatial and temporal
patterns of methane dynamics in the tropical mangrove dominated estuary, NE
coast of Bay of Bengal, India, J. Marine Syst., 68, 55-64.
Boon, P. I. and Mitchell, A., 1995. Methanogenesis in the sediments of an Australian
freshwater wetland: Comparison with aerobic decay, and factors controlling
methanogenesis, FEMS Microbiol. Ecol., 18, 175-190.
Boon, P. I., Mitchell, A., and Lee, K., 1997. Effects of wetting and drying on methane
emissions from ephemeral floodplain wetlands in south-eastern Australia
Hydrobiologia, 357, 73-87.
Bubier, J. L., Moore, T.R., and Roulet, N.T., 1993. Methane emissions from wetlands in
the midboreal region of northern Ontario, Canada, Ecology, 74, 2240-2254.
Bubier, J. L., 1995. The relationship of vegetation to methane emission and
hydrochemical gradients in northern peatlands, J. Ecol., 83, 403-420.
Bubier, J.L., Moore, T., Savage, K., and Crill, P., 2005. A comparison of methane flux
in a boreal landscape between a dry and a wet year, Global Biogeochem. Cy.,
19, GB1023, doi: 10.1029/2004GB002351.
Casper, P., Maberly, S.C., Hall, G.H., and Finlay, B.J., 2000. Fluxes of methane and
carbon
dioxide
from
a
small
productive
lake
to
the
atmosphere,
Biogeochemistry, 49, 1-19.
Chang, T.C. and Yanga, S.S., 2003. Methane emission from wetlands in Taiwan,
Atmos. Environm. , 37, 4551–4558.
Chasar, L. S., Chanton, J.P., Glaser, P.H., and Siegel, D.I., 2000. Methane concentration
and stable isotope distribution as evidence of rhizospheric processes: comparison
of a fen and bog in the Glacial Lake Agassiz Peatland Coplex, Ann. Bot., 86,
655-663.
Christensen, T.R., 1993. Methane emission from Arctic tundra, Biogeochemistry, 21,
117-139.
Clymo, R.S. and Reddaway, E.J.F., 1971. Productivity of Sphagnum (Bog-moss) and
peat accumulation, Hydrobiologia 12, 181-192.
Dasselaar, A., Van Beusichem, M.L., and Oenema, O., 1999. Methane emissions from
wet grasslands on peat soil in a nature preserve, Biogeochemistry, 44, 205-220.
De Angelis, M.A., and Lilley, M.D., 1987. Methane in surface waters of Oregon
estuaries and rivers. Limnol. Oceanogr. 32: 716–722
DeLaune, R.D., Smith, C.J., and Patrick, W.H., 1983. Methane release from Gulf
Coastal wetlands, Tellus, 35B, 8-15.
Devol, A.H., Richey, J.E., Clark, W.A., and King, S.L., 1988. Methane emissions to the
troposphere from the Amazon Floodplain, J. Geophys. Res., 93, 1583-1592.
Devol, A.H., Richey, J.E., Forsberg, B.R., and Martinelli, L.A., 1990. Seasonal
dynamics in methane emissions from the Amazon River floodplain to the
troposphere, J. Geophys Res., 95, 16417-16426.
Ding, W., Cai, Z., and Tsuruta, H., 2003. Diel variation in methane emissions from the
stands of Carex lasiocarpa and Deyeuxia angustifolia in a cool temperate
freshwater marsh, Atmos. Environm., 32, 181-188.
Ding, W., Cai, Z., Tsuruta, H., and Li, X., 2003. Key factors affecting spatial variation
of methane emissions from freshwater marshes, Chemosphere, 51, 167-173.
Ding, W., Cai, Z., and Wang, D., 2004. Preliminary budget of methane emissions from
natural wetlands in China, Atmos. Environm., 38, 751-759.
Ding, W., Cai, Z., and Tsuruta, H., 2005. Factors affecting seasonal variation of
methane concentration in water in a freshwater marsh vegetated with Carex
lasiocarpa, Biol. Fertil. Soils, 41, 1-8.
Ding, W., Cai, Z., Tsututa, H., and Li, X., 2005. Plant species effects on methane
emissions from freshwater marshes, Atmos. Environm., 39, 3199-3207.
Dise, N.B., Gorham, E., and Verry, E.S., 1993. Environmental factors controlling
methane emissions from peatlands in Northern Minnesota, J. Geophys. Res., 98,
10583-10594.
Duan, X., Wang, X., Mu, Y., and Ouyang, Z., 2005. Seasonal and diurnal variations in
methane emissions from Wuliangsu Lake in arid regions of China, Atmos.
Environ., 39, 4479-4487.
Fallon, R.D., Harris, S., Hanson, R.S., and Brock, T.D., 1980. The role of methane in
internal carbon cycling in Lake Mendota during summer stratification, Limnol.
Oceanogr., 25, 357-360.
Ferrón, S., Ortega, T., Gómez-Parra, A., and Forja, J.M., 2007. Seasonal study of
dissolved CH4, CO2 and N2O in a shallow tidal system of the bay of Cádiz (SW
Spain), J. Marine Syst., 66, 244-257.
Frenzel, P. and Karofeld, E., 2000. CH4 emission from a hollow-ridge complex in a
raised bog: the role of CH4 production and oxidation, Biogeochemistry, 51, 91112.
Friborg T., Soegaard, H., Christensen, T.R., Lloyd, C.R., and Panikov, N.S., 2003.
Siberian wetlands: Where a sink is a source, Geophys. Res. Lett., 30, 2129, doi:
10.1029/2003GL017797.
Gal´chenko, V.F., Dulov, L.E., Cramer, B., Konova, N.I., and Barysheva, S.V., 2001.
Biochemical processes of methane cycle in the soils, bogs, and lakes of western
Siberia, Microbiology, 70, 175-185.
Glenn, S., Heyes, A., and Moore, T.R., 1993. Methane and carbon dioxide fluxes from
drained peatlands soils, Global Biogeochem. Cy., 7, 247-258.
Hargreaves, K. J. and Fowler, D., 1998. Quantifying the effects of water table and soil
temperature on the emission of methane from peat wetland at the field scale,
Atmos. Environm., 32, 3257-3282.
Harris, R.C., Sebacher, D.I., and Day, F.P., 1982. Methane flux in the Great Dismal
Swamp, Nature 297, 673-674.
Heeschen, K.U., Keir, R.S., Rheder, G., Klatt, O., and Suess, E., 2004. Methane
dynamics in the Weddell Sea determined via stable isotope ratios and CFC-11,
Global Biogeochem. Cy.,18, GB2012,doi:1029/2003GB002151.
Heyer, J. and Berger, U., 2000. Methane emission from the coastal area in the Southern
Baltic Sea, Estuar. Coast. Shelf S., 51, 13-30.
Heyer, J., Berguer, U., Kuzin, I.L., and Yakovlev, O.N., 2002. Methane emissions from
different ecosystem structures of the subarctic tundra in Western Siberia during
midsummer and during thawing period, Tellus, 54B, 231-249.
Hirota, M., Tang, Y., Hu, Q., Hirata, S., Gato, T., Mo, W., Cao, G., and Mariko, S.,
2004. Methane emissions from different vegetation zones in a Qinghai-Tibetan
Plateau wetland, Soil Biol. Biochem., 36, 737-748.
Holmes, M.E., Sansone, F.J., Rust, T.M., and Popp, B.N., 2000. Methane production,
consumption, and air-sea exchange in the open ocean: An evolution based on
carbon isotopic ratios, Global Biogeochem. Cy., 14, 1, 1-10.
Howard, D.L., Frea, J.I., and Pfiser, R.M., 1971. The potential for methane-carbon
cycling in Lake Erie, Proc. 14th Conf. Great Lakes Res. (Int. Assoc. Great Lakes
Res.), 236-240.
Howes. B. L., Dacey, J.W.H., and Teal, J.M., 1985. Annual carbon mineralization and
below- ground production of Spartina alterniflora in a New England salt marsh,
Ecology, 66, 595-605.
Huang, G.H., Li, X.Z., Hu, Y.M.H., Shi, Y., and Xiao, D.N., 2005. Methane (CH4)
emissions from a natural wetland of Northern China, J. Environm. Sci. Health,
40, 1227-1238.
Hughes, S., Dowrick, D.J., Freeman, C., Hudson, S.A., and Reynolds, B., 1999.
Methane emissions from a Gully mire in mid-Wales, UK, under consecutive
summer water table drawdown, Environ. Sci. Technol., 33, 362-365.
Huttunen, J.T., Väisänen, T.S., Heikkinen, M., Hellsten, S., Nykänen, H., Nenonen, O.,
and Martikainen, P.J., 2002. Exchange of CO2, CH4 and NO2 between the
atmosphere and two northern boreal ponds with catchments dominated by
peatlands or forest, Plant Soil, 242, 137-146.
Huttunen, J.T., Alm, J., Liikanen, A., Juutinen, S., Larmola, T., Hammar, T., Silvola, J.,
and Martikainen, P.J., 2003. Fluxes of methane, carbon dioxide and nitrous
oxide in boreal lakes and potential anthropogenic effects on the aquatic
greenhouse gas emissions, Chemosphere, 52, 609-621.
Hyvönen, T., Ojala, A., Kankaala, P., and Martikainen, P.J., 1998. Methane release
from stands of water horsetail (Equisetum fluviale) in a boreal lake, Freshwat.
Biol., 40, 275-284.
Inubushi, K., Furukawa, Y., Hadi, A., Purnomi, E., and Tsuruta, H., 2003. Seasonal
changes of CO2, CH4 and N2O fluxes in relation to land-use change in tropical
peatlands located in coastal area of South Kalimatan, Chemosphere, 52, 603608.
Joabsson, A. and Christensen, T.R., 2001. Methane emissions from wetlands and their
relationship with vascular plants: an Arctic example, Glob. Change Biol., 7, 919932.
Jones, M.B., 2000. Methane production and emission from papyrus-dominated
wetlands, Verh. Internat. Verein. Limnol., 27, 1406-1409.
Juutinen, S., Alm, J., Martikainen, P., and Silvola, J., 2001. Effects of spring flood and
water level draw-down on methane dynamics in the littoral zone of boreal lakes,
Freshwat. Biol., 46, 855-869.
Juutinen, S., Alm, J., Larmola, T., Saarnio, S., Martikainen, P.J., and Silvola, J., 2004.
Stand-specific diurnal dynamics of CH4 fluxes in boreal lakes: Patterns and
controls, J. Geophys. Res., 109, D19313, doi:10.1029/2004JD004782.
Käki, T., Ojala, A., and Kankaala, P., 2001. Diel variation in methane emissions from
stands of Phragmites australis (Cav.) Trin. ex Steud. and Typha latifolia L. in a
boreal lake, Aquat. Bot., 71, 259-271.
Kang, H. and Freeman, C., 2002. The influence of hydrochemistry on methane
emissions from two contrasting northern wetlands, Water Air Soil Poll., 141,
263-272.
Kankaala, P., Käki, T., and Ojala, A., 2003. Quality of detritus impacts on spatial
variation of methane emissions from littoral sediment of a boreal lake, Arch.
Hydrobiol., 157, 47-66.
Kankaala, P., Ojala, A., and Käki, T., 2004. Temporal and spatial variation in methane
emissions from a flooded transgression shore of a boreal lake, Biogeochemistry,
68, 297-311.
Kankaala, P., Käki, T., Mäkelä, S., Ojala, A., Pajunen, H., and Arvola, L., 2005.
Methane efflux in relation to plant biomass and sediment characteristics in
stands of three common emergent macrophytes in boreal mesotrophic lakes,
Glob. Change Biol., 11, 145-153.
Keller, M., 1990. Biological sources and sinks of methane in tropical habitats and
tropical atmospheric chemistry, Ph. D. dissertation, Princeton University and
National Centre for Atmospheric Research, 216 pp.
Kelley, C.A. and Jeffrey, W.H., 2002. Dissolved methane concentration profiles and airsea fluxes from 41ºN to 27ºN, Global Biogeochem. Cy., 16, 3, doi:
10.1029/2001GB001809.
Kim, J., Verma, S.B., and Billesbach, D.P., 1998. Seasonal variation in methane
emission from a temperate Phragmites-dominated marsh: effect of growth stage
and plant-mediated transport, Glob. Change Biol., 5, 433-440.
King, G.M. and Wiebe, W.J., 1978. Methane release from soils of Georgia salt marsh,
Geochim. Cosmochim. Acta, 42, 343-348.
Kitidis, V., Tizzard, L., Uher, G., Judd, A., Upstill-Goddered, R.C., Head, I.M., Gray,
N.D. Taylor, G., Duran, R., Diez, R., Iglesias, J., and García-Gil, S., 2007. The
biogeochemical cycling of methane in Ria de Vigo, NW Spain: sediment
processing and sea-air exchange, J. Marine Syst., 66, 258-271.
Kling, G.W., Kipphut, G.W., and .Miller, M.C., 1992. The flux of CO2 and CH4 from
lakes and rivers in arctic Alaska, Hydrobiologia, 240, 23-36.
Kock, A., Gebhardt, S., and Bange, H.W., 2008. Methane emissions from the upwelling
area of Mauritania (NW Africa), Biogeosciences, 5, 1119-1125.
Kutzbach, L., Wagner, D., and Pfeiffer, E.M., 2004. Effect of microrelief and vegetation
on methane emission from wet polygonal tundra, Lena delta, Northern Siberia,
Biogeochemistry, 69, 341-362.
Lammers, S. and Suess, E., 1994. An improved head-space analysis method for
methane in seawater, Mar. Chem., 47, 115-125.
Lammers, S., Suess, E., Mansurov, M.N., and Anikiev, V.V., 1995. Variations of
atmospheric methane supply from the Sea of Okhotsk induced by the seasonal
ice cover, Global Biogeochem. Cy., 9, 351-358.
Mattson, M.D. and Likens, G.E., 1993. Redox reactions of organic matter
decomposition in a soft water lake, Biogeochemistry, 19, 149-172.
Megonigal, J. P. and Schlesinger, W.H., 2002. Methane-limited methanotrophy in tidal
freshwater
swamps,
Global
Biogeochem.
Cy.,
16,
1088,
doi:10.1029/2001GB001594.
Melling, L., Hatano, R., and Goh, K.J., 2005. Methane fluxes from three ecosystems in
tropical peatland of Sarawak, Malasia, Soil Biol. Biochem., 37, 1445-1453.
Michmerhuizen, C.M., Striegel, R.G., and McDonald, M.E., 1996. Potential methane
emission from north-temperate lakes following ice melt, Limnol. Oceanogr., 41,
985-991.
Mikkelä, C., Sundh, I., Svensson, B., and Nilsson, M., 1995. Diurnal variation in the
methane emission in relation to the water table, soil temperature, climate and
vegetation cover in a Swedish acid mire, Biogeochemistry, 28, 93-114.
Miyajima, T., Yamada, Y., Wada, E., Nakajima, T., Kotabashi, T., Hanba, Y.T., and
Yoshi, K., 1997. Distribution of greenhouse gases, nitrite, and δ13 C of
dissolved inorganic carbon in Lake Biwa: Implications for hypolimnetic
metabolism, Biogeochemistry, 36, 205-211.
Molongoski, J.J. and Klug, M.J., 1980. Anaerobic metabolism of particulate organic
matter in the sediments of a hypereutrophic lake, Freshwater Biol., 10, 507-518.
Moore, T.R., Heyes, A., and Roulet, N.T., 1994. Methane emissions from wetlands,
southern Hudson Bay lowland, J. Geophys. Res., 99, 1455-1467.
Nakamura, T., Nojiri, Y., Utsumi, M., Takeshi, Nozawa, and Otsuki, A., 1999. Methane
emission to the atmosphere and cycling in a shallow eutrophic lake, Archiv. Für
Hydrobiologie, 144, 383-407.
Nakano, T., Kuniyoshi, S., and Fukuda, M., 2000. Temporal variation in methane
emission from tundra wetland in a permafrost area, north eastern Siberia, Atmos.
Environm., 34, 1205-1213.
Naqvi, S.W.A., Bange, H.W., Gibb, S.W., Goyet, C., Hatton, A.D., and UpstillGoddard, R.C., 2005. Biogeochemical ocean-atmosphere transfer in the Arabian
Sea, Prog. Oceanogr., 65, 116-144.
Nykänen, H., Alm, J., Silvola, J., Tolonen, K., and Martikainen, P.J., 1998. Methane
fluxes on boreal peatlands of different fertility and the effect of long-term
experimental lowering of the water table on fluxes rates, Global Biogeochem.
Cy., 12, 53-69.
Ojala, A., Käki, T., and Huttunen, J., 2000. Methane emissions from boreal mesoeutrophic lake: an assessment of seasonal and diel variation among emergent
vegetation, Verh. Internat. Verein. Limnol., 27, 1420-1423.
Öquist, M. G. and Svensson, B.H., 2002. Vascular plants as regulators of methane
emissions from a subarctic mire ecosystem, J. Geophys. Res., 107, D21, 4580,
doi: 10.1029/2001JD001030.
Oudot, C., Jean-Baptiste, P., Fourré, E., Marmiche, C., Guevel, M., Ternon, J.-F., and
Le Corre, P., 2002. Transatlantic equatorial distribution of nitrous oxide and
methane, Deep-sea Res. Pt I, 49, 1175-1193.
Owens, N.J.P., Law, C.S., Mantoura, R.F.C., Burkill, P.H., and Llewellyn, C.A., 1991.
Methane flux to the atmosphere from the Arabian Sea, Nature, 354, 293-296.
Phelps, A.R., Peterson, K.M., and Jeffries, M.O., 1998. Methane efflux from highlatitude lakes during ice melt, J. Geophys. Res., 103, 29029-29036.
Pulliam, W.M., 1993. Carbon dioxide and methane exports from a south eastern
floodplain swamp, Ecol. Monogr., 63, 29-53.
Purvaja, R. and Ramesh, R., 2001. Natural and anthropogenic methane emission from
coastal wetlands of South India, Environm. Managemn., 27, 547-557.
Purvaja, R., Ramesh, R., and Frenzer, P., 2004. Plant-mediated methane emission from
an Indian mangrove, Glob. Change Biol., 10, 1825-1834.
Rask, H., Schoenau, J., and Anderson, D., 2002. Factors influencing methane flux from
a boreal forest wetland in Saskatchewan, Canada, Soil Biol. Biochem., 34, 435443.
Reeburgh, W.S., Ward, B.B., Whalen, S.C., Sandbeck, K.A., Kilpatrick, K.A., and
Kerkhof, L.J., 1991. Black Sea methane geochemistry. Deep Sea Research 38,
(Suppl. 2), S1189-S1210.
Rehder, G., Keir, R.S., Suess, E., and Pohlmann, T., 1998. The multiple sources and
patterns of methane in North Sea waters. Aquat. Geochem., 4, 403-427.
Rehder, G. and Suess, E., 2001. Methane and pCO2 in the Kuroshio and the South
China Sea during maximum summer surface temperatures, Mar. Chem. 75, 89108.
Rejmankova, E., and Post, R.A., 1996. Methane in sulfate-rich and sulfate-poor wetland
sediments, Biogeochemistry, 34, 57-70.
Roulet, N.T., Ash, R., Quinton, W., and Moore, T., 1993. Methane flux from drained
northern peatlands: effect of a persistent water table lowering on flux, Global
Biogeochem. Cy., 7, 749-769.
Roulet, N.T., Crill, P.M. Comer, N.T., Dove, A., and Boubonniere, R.A., 1997. CO2 and
CH4 flux between a boreal beaver pond and the atmosphere, J. Geophys. Res.,
102, 29313-29319.
Rouse, W.R., Holland, S., and Moore, T.R., 1995. Variability in methane emissions
from wetlands at Northern treeline near Churchill, Manitoba, Canada, Arct. Alp.
Res., 27, 146-156.
Rudd, J.W.M. and Hamilton, R.D., 1978. Methane cycling in an eutrophic shield lake
and its effects on whole lake metabolism, Limnol. Oceanogr., 23,337-348.
Sansone, F.J., Popp, B.N., Gasc, A., Graham, A.W., and Rust, T.M., 2001. Highly
elevated methane in the eastern tropical North Pacific and associated isotopically
enriched fluxes to the atmosphere, Geophys. Res., 28, 4567-4570.
Schimel, J.P., 1995. Plant transport and methane production as controls on methane flux
from arctic wet meadow tundra, Biogeochemistry, 28, 183-200.
Schultz, M., Faber, E., Hollerbach, A., Schröder, H.G., and Güde, H., 2001. The
methane cycling in the epilimnion of Lake Constance, Arch. Hydrobiol., 151,
157-176.
Scott, K.J., Kelly, C.A., and Rudd, J.W.M., 1999. The importance of floating peat to
methane fluxes from flooded peatlands, Biogeochemistry, 47, 187-202.
Scranton, M.I. and Brewer, P.G., 1977. Occurrence of methane in the near-surface
waters of the western subtropical North-Atlantic, Deep-Sea Res., 24, 127-138.
Shakhova, N. and Semiletov, I., 2007. Methane release and coastal environment in the
East Siberian Arctic shelf, J. Marine Syst., 66, 227-243.
Shannon, R. D. and White, J.R., 1994. A three-year study of controls on methane
emissions from two Michigan peatlands, Biogeochemistry, 27, 35-60.
Smith, L.K. and Lewis, W.M.J., 1992. Seasonality of methane emissions from five lakes
and associated wetlands of the Colorado Rockies, Global Biogeochem. Cy., 6,
323-338.
Smith, L. K., Lewis, W.M., Chanton, J.P., Cronin, G., and Hamilton, S.K., 2000.
Methane
emissions
from
the
Orinoco
River
floodplain,
Venezuela,
Biogeochemistry, 51, 113-140.
Sotomayor, D., Corredor, J.E., and Morell, J.M., 1994. Methane flux from Mangrove
sediments along the south western coast of Puerto Rico, Estuaries, 17, 140-147.
Soumis, N, Ducheimin, E., Canuel, R., and Lucotte, M., 2004. Greenhouse gas
emissions from reservoirs of the western United States, Global Biogeochem.
Cy., 18, GB3022, doi:10.1029/2003GB002197.
Sugimoto, A. and Fujita, N., 1997. Characteristics of methane emissions from different
vegetations on a wetland, Tellus, 49B, 382-392.
Sundh, I., Mikkelä, C., Milsson, M., and Svensson, B., 1995. Potential aerobic methane
oxidation in a Sphagnum-dominated peatland-controlling factors and relation to
methane emission, Soil. Biol. Biochem., 27, 829-837.
Tavares de Lima, I.B., Victoria, R.L., Novo, E.M.L.M., Feigl, B.J., Ballester, M.V.R.,
and Ometto, J.P., 2002. Methane, carbon dioxide and nitrous oxide emissions
from two Amazonian reservoirs during high water table, Verh. Internat. Verein.
Limnol., 28, 438-442.
Tilbrook, B.D. and Karl, D.M., 1994. Dissolved methane distributions, sources, and
sinks in the western Bransfield straits, Antarctica, J. Geophy. Res., 99 C8,
16383-16393.
Turetsky, M.R., Wieder, R.K., and Vitt, D., 2002. Boreal peatland C fluxes under
varying permafrost regimes, Soil. Biol. Biochem., 34, 907-912.
Utsumi, M., Noijiri, Y., Nakamura, T., Nozawa, T., Otsuki, A., and Seki, H., 1998a.
Oxidation of dissolved methane in a eutrophic, shallow lake: Lake Kasumigaura,
Japan, Limnol. Oceanogr. ,43, 471-480.
Verma, A., Subramanian, V., and Ramesh, R., 2002. Methane emissions from a coastal
lagoon: Vembanad Lake, West Coast, India, Chemosphere, 47, 883–889.
Waddington, J. M. and Roulet, N.T., 1996. Atmosphere-wetland carbon exchanges:
scale dependency of CO2 and CH4 exchange on the development topography of
a peatland, Global Biogeochem. Cy., 10, 233-245.
Wang, Z. and Han, X., 2005. Diurnal variation in methane emissions in relation to
plants and environmental variables in the Inner Mongolia marshes, Atmos.
Environm., 39, 6295-6305.
Ward, B.B., Kilpatrick, K.A., Novelli, P.C., and Scranton, M.I., 1987. Methane
oxidation and methane fluxes in the ocean surface layer and deep anoxic waters.
Nature 327: 226–229.
Wassmann, R. and Tgein, U.G., 1996. Spatial and seasonal variation of methane
emission from an Amazon floodplain lake, Mitt. Internat. Verein. Limnol.,
25,179-185.
West, A.E., Brooks, P.D., Fisk, M.C., Smith, L.K., Holland, E.A., Jaeger III, C.H.,
Babcock, S., Lai, R.S., and Schmidt, S.K., 1999. Landscape patterns of CH4
fluxes in an alpine tundra ecosystem, Biogeochemistry, 45, 243-264.
Weyhenmeyer, C.E., 1999. Methane emissions from beaver ponds: Rates, patterns, and
transport mechanism, Global Biogeochem. Cy., 13, 1079-1090.
Whalen, S.C. and Reeburgh, W.S., 1988. A methane flux time series for tundra
environments, Global Biogeochem. Cy., 2, 399-409.
Whiting, G. J. and Chanton, J.P., 1992. Plant-dependent CH4 emission in a subarctic
Canadian fen, Global Biogeochem. Cy., 6, 225-231.
Wilson, J.O., Crill, P.M., Bartlett, K.B., Sebacher, D.I., Harris, R.C., and Sass, R.L.,
1989. Seasonal variation of methane emissions from a temperate swamp,
Biogeochemistry, 8, 55-71.
Xing,Y., Xie, P., Yang, H., Ni, L., Wang, Y., and Tang, W., 2004. Diel variation of
methane fluxes in summer in an eutrophic subtropical lake in China, J. Freshw.
Ecol., 19, 639-644.
Xing, Y., Xie, P., Yang, H., Ni, L., Wang, Y., and Rong, K., 2005. Methane and carbon
dioxide fluxes from a shallow hypereutrophic subtropical Lake in China, Atmos.
Environm., 39, 5532-5540.
Yavitt, J.B., Angell, L.L., Fahey, T.J., Cisma, C.P., and Driscoll, C.T., 1992. Methane
fluxes,
concentrations,
and
productions
in
two
Adirondack
beaver
impoundments, Limnol. Oceanogr., 37, 1057-1066.
Zhang, Y., Li, C., Trettin, C.C., Li, H., and Sun, G., 2002. An integrated model of soil,
hydrology, and vegetation for carbon dynamics in wetland ecosystems, Global
Biogeochem. Cy., 16, 1061, doi: 10.1029/2001GB001838.
Zhang, G.L., Zhang, J., Kang, Y.B., and Liu, S.M., 2004. Distributions and fluxes of
methane in the East China Sea and the Yellow Sea in spring, J. Geophys. Res.,
109,C07011,doi: 10.1029/2004JC2268.
Zhang, G., Zang, J., Liu, S., Ren, J., Xu, J., and Zhang, F., 2008. Methane in the
Changjiang (Yangtze River) estuary and its adjacent marine area: riverine input,
sediment release and atmospheric fluxes, Biogeochemistry, 91, 71-84.
Download