15. Biogenic Trace Gas Exchanges
Baldocchi, D.D. Canopy control of trace gas emissions.
In: Sharkey, T.D., Holland, E.A., Mooney, H.A., eds.
Trace Gas Emissions by Plants. San Diego, CA: Academic; 1991:293-333.
Baldocchi, D.D.; Hicks, B.B.; Meyers, T.P. Measuring
biosphere-atmosphere exchanges of biologically related gases with micrometeorological methods. Ecology 69(5):1331-1340; 1988.
Bartlett, D.S.; Bartlett, K.B.; Hartmann, J.M.; Harriss,
RC.; Sebacher, D.I.; Pelletier-Travis, R.; Dow, D.D.;
Brannon, D.P. Methane emissions from the Florida
Everglades: Patterns of variability in a regional wetland ecosystem. Global Biogeochemical Cycles
3:363-374; 1989.
Bartlett, D.S.; Crill, P.M.; Bonassi, J.A.; Richey, J.E.;
Harris, RC. Methane flux from the Amazon River
floodplain: Emissions during rising water. J. Geophys.
Res. 95:16,773-16,778; 1990.
Bartlett, K.B.; Harriss, RC. Review and assessment of
methane emissions from wetlands. Chemosphere
26:261-320; 1993.
Bouwman, A.F. Direct Emission of Nitrous Oxide from
Agricultural Soils. Report nr 773004004. Bilthoven,
Netherlands: National Institute of Public Health, Environmental Protection; 1994.
Brassenr, G.P.; Chatfield, R.B. The fate of biogenic trace
gases in the atmosphere. In: Sharkey, T.D.; Holland,
E.A.; Mooney, H.A.; eds. Trace Gas Emissions by
Plants. San Diego, CA: Academic; 1991:1-27.
Brooks, P.D.; Atkins, GJ.; Herman, D.l; Prosser, S.J.;
Barrie, A. Rapid, isotopic analysis of selected soil
gases at atmospheric concentrations. In: Harper, L.A.,
Mosier, A.R.; Duxbury, 1M.; Rolston, D.E.; eds. Agricultural Ecosystem Effects on Trace Gases and
Global Climate Change. Volume Special Publication
55. Madison, WI: American Society of Agronomy;
1993:193-202.
Castro, M.S.; Galloway, J.N. A comparison of sulfur-free
and ambient air enclosure techniques for measuring
the exchange of reduced sulfur gases between the soils
and the atmosphere. 1 Geophys. Res. 96:1542715437; 1991.
Chameides, W.L.; Lindsay, R.W.; Richardson, J.; Kiang,
C.S. The role of biogenic hydrocarbons in urban photochemical smog: Atlanta as a case study. Science
241:1473-1475; 1988.
Chanton, J.P.; Dacey, J.W.H. Effects of vegetation on
methane flux, reservoirs, and carbon isotopic composition. In: Sharkey, T.D.; Holland, E.A.; Mooney,
H.A.; eds. Trace Gas Emissions by Plants. San Diego,
CA: Academic; 1991:65-92.
Chanton, J.P.; Martens, C.S. Seasonal variations in ebullitive flux and carbon isotopic composition of methane
in a tidal freshwater estuary. Global Biogeochem.
Cycl. 2:289-298; 1988.
245
Chanton, J.P.; Martens, C.S.; Kelley, C.A. Gas transport
from methane-saturated tidal freshwater and wetland
sediments. Limnol. Oceanogr. 34:807-819; 1989.
Chanton, J.P.; Whiting, G.J. Trace gas exchange in freshwater and coastal marine environments: Ebullition and
transport by plants. In: Matson, P.A.; Harriss, R.C.;
eds. Biogenic Trace Gases: Measuring Emissionsfrom
Soil and Water. Cambridge, MA: Blackwell; 1995:98125.
Clark, J.F.; Simpson, H.J.; Smethie, W.M.; Toles, C. Gas
exchange in a contaminated estuary inferred from
chlorofluoroocarbons. Geophys. Res. Lett. 19:11331136; 1992.
Crill, P.M.; Bartlett, K.B.; Wilson, 10. Tropospheric
methane from an Amazonian floodplain lake. J. Geophys. Res. 93:1564-1570; 1988.
Crill, P.M.; Butler, J.H.; Cooper, DJ.; Novelli, P.C. Standard analytical methods for measuring trace gases in
the environment. In: Matson, P.A.; Harriss, R.C.; eds.
Biogenic Trace Gases: Measuring Emissions from Soil
and Water. Cambridge, MA: Blackwell; 1995:164205.
Davidson, E.A. Sources of nitric oxide and nitrous oxide
following wetting of dry soil. Soil Sci. Soc. Am. J.
56:95-102; 1992.
Davidson, E.A. Soil water content and the ratio of nitrous
oxide to nitric oxide emitted from soil. In: Oremland,
R.S. ed. Biogeochemistry of Global Change: Radiatively Active Trace Gases. New York: Chapman and
Hall; 1993:369-386.
Davidson, E.A.; Matson, P.A.; Vitousek, P.M.; Riley, R;
Garcia-Mendez, G.; Maass, J.M. Processes regulating
soil emissions of NO and N20 in a seasonally dry
tropical forest. Ecology 74:130-139; 1993.
Davis, K.J. Surface Fluxes of Trace Gases Derivedfrom
Convective-Layer Profiles. Ph.D. dissertation, University of Colorado, Boulder, CO; 1992.
Denmead, O.T. Chamber systems for measuring nitrous
oxide emission from soils in the field. Soil Sci. Soc.
Am. 1 43:89-95; 1979.
Denmead, O.T. Micrometeorological methods for measuring gaseous losses of nitrogen in the field. In: Freney, J.R.; Simpson, J.R; eds. Gaseous Loss of Nitrogenfrom Plant-Soil Systems. The Hague, Netherlands:
Martinus NijhofflW. Junk; 1983:133-157.
Devol, A.H.; Richey, lE.; Clark, w.A.; King, S.L.; Martinelli, L.A. Methane emissions to the troposphere
from the Amazon floodplain. 1 Geophys. Res.
93:1583-1592; 1988.
Eichner, MJ. Nitrous oxide emissions from fertilized
soils: Summary of available data. J. Environ. Qual.
19:272-280; 1990.
Fehsenfeld, F. Measurement of chemically reactive trace
gases at ambient concentrations. In: Matson, P.A.;
Harriss, R.C.; eds. Biogenic Trace Gases: Measuring
Baldocchi, D.D. Canopy control of trace gas emissions.
In: Sharkey, T.D., Holland, E.A., Mooney, H.A., eds.
Trace Gas Emissions by Plants. San Diego, CA: Academic; 1991:293-333.
Baldocchi, D.D.; Hicks, B.B.; Meyers, T.P. Measuring
biosphere-atmosphere exchanges of biologically related gases with micrometeorological methods. Ecology 69(5):1331-1340; 1988.
Bartlett, D.S.; Bartlett, K.B.; Hartmann, J.M.; Harriss,
RC.; Sebacher, D.I.; Pelletier-Travis, R.; Dow, D.D.;
Brannon, D.P. Methane emissions from the Florida
Everglades: Patterns of variability in a regional wetland ecosystem. Global Biogeochemical Cycles
3:363-374; 1989.
Bartlett, D.S.; Crill, P.M.; Bonassi, J.A.; Richey, J.E.;
Harris, RC. Methane flux from the Amazon River
floodplain: Emissions during rising water. J. Geophys.
Res. 95:16,773-16,778; 1990.
Bartlett, K.B.; Harriss, RC. Review and assessment of
methane emissions from wetlands. Chemosphere
26:261-320; 1993.
Bouwman, A.F. Direct Emission of Nitrous Oxide from
Agricultural Soils. Report nr 773004004. Bilthoven,
Netherlands: National Institute of Public Health, Environmental Protection; 1994.
Brassenr, G.P.; Chatfield, R.B. The fate of biogenic trace
gases in the atmosphere. In: Sharkey, T.D.; Holland,
E.A.; Mooney, H.A.; eds. Trace Gas Emissions by
Plants. San Diego, CA: Academic; 1991:1-27.
Brooks, P.D.; Atkins, GJ.; Herman, D.l; Prosser, S.J.;
Barrie, A. Rapid, isotopic analysis of selected soil
gases at atmospheric concentrations. In: Harper, L.A.,
Mosier, A.R.; Duxbury, 1M.; Rolston, D.E.; eds. Agricultural Ecosystem Effects on Trace Gases and
Global Climate Change. Volume Special Publication
55. Madison, WI: American Society of Agronomy;
1993:193-202.
Castro, M.S.; Galloway, J.N. A comparison of sulfur-free
and ambient air enclosure techniques for measuring
the exchange of reduced sulfur gases between the soils
and the atmosphere. 1 Geophys. Res. 96:1542715437; 1991.
Chameides, W.L.; Lindsay, R.W.; Richardson, J.; Kiang,
C.S. The role of biogenic hydrocarbons in urban photochemical smog: Atlanta as a case study. Science
241:1473-1475; 1988.
Chanton, J.P.; Dacey, J.W.H. Effects of vegetation on
methane flux, reservoirs, and carbon isotopic composition. In: Sharkey, T.D.; Holland, E.A.; Mooney,
H.A.; eds. Trace Gas Emissions by Plants. San Diego,
CA: Academic; 1991:65-92.
Chanton, J.P.; Martens, C.S. Seasonal variations in ebullitive flux and carbon isotopic composition of methane
in a tidal freshwater estuary. Global Biogeochem.
Cycl. 2:289-298; 1988.
245
Chanton, J.P.; Martens, C.S.; Kelley, C.A. Gas transport
from methane-saturated tidal freshwater and wetland
sediments. Limnol. Oceanogr. 34:807-819; 1989.
Chanton, J.P.; Whiting, G.J. Trace gas exchange in freshwater and coastal marine environments: Ebullition and
transport by plants. In: Matson, P.A.; Harriss, R.C.;
eds. Biogenic Trace Gases: Measuring Emissionsfrom
Soil and Water. Cambridge, MA: Blackwell; 1995:98125.
Clark, J.F.; Simpson, H.J.; Smethie, W.M.; Toles, C. Gas
exchange in a contaminated estuary inferred from
chlorofluoroocarbons. Geophys. Res. Lett. 19:11331136; 1992.
Crill, P.M.; Bartlett, K.B.; Wilson, 10. Tropospheric
methane from an Amazonian floodplain lake. J. Geophys. Res. 93:1564-1570; 1988.
Crill, P.M.; Butler, J.H.; Cooper, DJ.; Novelli, P.C. Standard analytical methods for measuring trace gases in
the environment. In: Matson, P.A.; Harriss, R.C.; eds.
Biogenic Trace Gases: Measuring Emissions from Soil
and Water. Cambridge, MA: Blackwell; 1995:164205.
Davidson, E.A. Sources of nitric oxide and nitrous oxide
following wetting of dry soil. Soil Sci. Soc. Am. J.
56:95-102; 1992.
Davidson, E.A. Soil water content and the ratio of nitrous
oxide to nitric oxide emitted from soil. In: Oremland,
R.S. ed. Biogeochemistry of Global Change: Radiatively Active Trace Gases. New York: Chapman and
Hall; 1993:369-386.
Davidson, E.A.; Matson, P.A.; Vitousek, P.M.; Riley, R;
Garcia-Mendez, G.; Maass, J.M. Processes regulating
soil emissions of NO and N20 in a seasonally dry
tropical forest. Ecology 74:130-139; 1993.
Davis, K.J. Surface Fluxes of Trace Gases Derivedfrom
Convective-Layer Profiles. Ph.D. dissertation, University of Colorado, Boulder, CO; 1992.
Denmead, O.T. Chamber systems for measuring nitrous
oxide emission from soils in the field. Soil Sci. Soc.
Am. 1 43:89-95; 1979.
Denmead, O.T. Micrometeorological methods for measuring gaseous losses of nitrogen in the field. In: Freney, J.R.; Simpson, J.R; eds. Gaseous Loss of Nitrogenfrom Plant-Soil Systems. The Hague, Netherlands:
Martinus NijhofflW. Junk; 1983:133-157.
Devol, A.H.; Richey, lE.; Clark, w.A.; King, S.L.; Martinelli, L.A. Methane emissions to the troposphere
from the Amazon floodplain. 1 Geophys. Res.
93:1583-1592; 1988.
Eichner, MJ. Nitrous oxide emissions from fertilized
soils: Summary of available data. J. Environ. Qual.
19:272-280; 1990.
Fehsenfeld, F. Measurement of chemically reactive trace
gases at ambient concentrations. In: Matson, P.A.;
Harriss, R.C.; eds. Biogenic Trace Gases: Measuring
