Ball, B. C., Scott, A., and Parker, J. P.: 1999, ‘Field N2O, CO2, and CH4 Fluxes in Relation to Tillage, Compaction and Soil Quality in Scotland’, Soil Tillage Res.
53, 29–39.
Google Scholar
Bouwman, A. F.: 1990, ‘Exchange of Greenhouse Gases between Terrestrial Ecosystems and the Atmosphere’, in Bouwman, A. F. (ed.), Soils and the Greenhouse Effect, John Wiley and Sons, Chichester, England, pp. 61–127.
Google Scholar
Boehm, M., Junkins, B., Desjardins, R., Kulshreshtha, S., and Lindwall, W.: 2003, 'Sink Potential of Canadian Agricultural Soils’, (this issue).
CanSIS (Canadian Soil Information System): 2003, 'Major Soil Regions of Canada', Agriculture and Agri-Food Canada, retrieved from http://sis.agr.gc.ca/cansis/publications/health/frontin.html.
Choudhary, M. A., Akramkhanov, A., and Saggar, S.: 2001, ‘Nitrous Oxide Emissions in Soils Cropped with Maize under Long-term Tillage and under Permanent Pasture in New Zealand’, Soil Tillage Res.
62, 61–71.
Google Scholar
Choudhary, M. A., Akramkhanov, A., and Saggar, S.: 2002, ‘Nitrous Oxide Emissions from a New Zealand Cropped Soil: Tillage Effects, Spatial and Seasonal Variability’, Agricult. Ecosyst.Environ.
1931, 1–11.
Google Scholar
Conant, R. T., Paustian, K., and Elliott, E. T.: 2001, ‘Grassland Management and Conversion into Grassland: Effects on Soil Carbon’, Ecol. Appl.
11(2), 343–355.
Google Scholar
Desjardins, R. L. and Riznek, R.: 2000, ‘Agricultural Greenhouse Gas Budget’, in McRae, T., Smith, C. A. S., and Gregorich, L. J. (eds.), Environmental Sustainability of Canadian Agriculture: Report of the Agri-Environmental Indicator Project, Catalogue No. A22-201/2000E, Agriculture and Agri-Food Canada, Ottawa, Ontario, pp. 133–142.
Google Scholar
Eichner, M. J.: 1990, ‘Nitrous Oxide Emissions from Fertilized Soils: Summary of Available Data’, J. Environ. Qual.
19, 272–280.
Google Scholar
Follet, R. F. and McConkey, B.: 2000, ‘The Role of Cropland Agriculture for C Sequestration in the Great Plains’, In Proceedings of the Conference on Great Plains Soil Fertility, Vol. 8, pp. 1–15.
Google Scholar
Granli, T. and Bockman, O. C.: 1994, ‘Nitrous Oxide from Agriculture’, Norw. J. Agric. Sci. Suppl.
12, 48–53.
Google Scholar
IPCC: 2001, Climate Change 2001: The Scientific Basis. Contribution of Working Group I to the Third Assessment Report of the Intergovernmental Panel on Climate Change, Houghton, J. T., Ding, Y., Griggs, D. J., Noguer, M., v.d. Linden, P. J., Dai, X., Maskell, K., and Johnson, C. A. (eds.), Cambridge University Press, p. 881.
Janzen, H. H., Campbell, C. A., Izaurralde, R. C., Ellert, B. H., Juma, N., McGill, W. B., and Zentner, R. P.: 1998a, ‘Management Effects on Soil C Storage on the Canadian Prairies’, Soil Till. Res.
47, 181–195.
Google Scholar
Janzen, H. H., Campbell, C. A., Gregorich, E. G., and Ellert, B. H.: 1998b, ‘Soil Carbon Dynamics in Canadian Agroecosystems’, in Lal, R., Kimble, J., Follett, R., and Stewart, B. A. (eds.), Soil Processes and Carbon Cycles, CRC Press, Boca Raton, FL, pp. 57–80.
Google Scholar
Korol, M. and Girard, L.: 1996, Canadian Fertilizer Consumption, Shipments and Trade 1994/95, Farm Income Policy and Programs Directorate, Agriculture and Agri-Food Canada, Ottawa, Ontario.
Google Scholar
Lal, R. and Bruce, J. P.: 1999, ‘The Potential of World Cropland Soils to Sequester C and Mitigate the Greenhouse Effect’, Environ. Sci. Pol.
2(2), 177–185.
Google Scholar
Li, C., Frolking, S., and Frolking, T. A.: 1992a, ‘A Model of Nitrous Oxide Evolution from Soil Driven by Rainfall Events: 1. Model Structure and Sensitivity’, J. Geophys. Res.
97, 9759–9776.
Google Scholar
Li, C., Frolking, S., and Frolking, T. A.: 1992b, ‘A Model of Nitrous Oxide Evolution from Soil Driven by Rainfall Events: 2. Model Applications’, J. Geophys. Res.
97, 9888–9783.
Google Scholar
Li, C., Frolking, S., and Harriss, R.: 1994. ‘Modeling Carbon Biogeochemistry in Agricultural Soils’, Global Biogeochem. Cycles
8, 237–254.
Google Scholar
Li, C., Frolking, S., Crocker, G. J., Grace, P. R., Klir, J., Korchens, M., and Poulton, P. R.: 1997, ‘Simulating Trends in Soil Organic Carbon in Long-term Experiments Using the DNDC Model’, Geoderma
81, 45–60.
Google Scholar
Li, C.: 2000, ‘Modeling Trace Gas Emissions from Agricultural Ecosystems', Nutrient Cycling Agroecosyst.
58, 259–276.
Li, C., Zhuang, Y., Cao, M., Crill, P., Dai, Z., Frolking, S., Moore III, B., Salas, W., Song, W., and Wang, X.: 2001, ‘Comparing a Process-based Agro-ecosystem Model to the IPCC Methodology for Developing a National Inventory of N2O Emissions from Arable Lands in China’, Nutrient Cycling Agroecosyst.
60, 159–175.
Google Scholar
Lemke, R. L., Izaurralde, R. C., Nyborg, M., and Solberg, E. D.: 1999, ‘Tillage and N-source In-fluence Soil-emitted Nitrous Oxide in the Alberta Parkland Region’, Can. J. Soil Sci.
79(1), 15–24.
Google Scholar
Lemke, R. L., McConkey, B. G., Izaurralde, R. C., Goddard, T. W., Selles, F., Campbell, C. A., Boehm, M., and Lindwall, C. W.: 2001, ‘Reduced Tillage: Can It Help Conserve Soils and Reduce Greenhouse Gas Emissions from Western Canadian Agriculture?’, in Wei et al. (eds.), Promoting Global Innovation of Agricultural Science and Technology and Sustainable Agricultural Development, Proceedings of the International Conference on Agricultural Science and Technology, Nov. 7-9, Beijing, China, pp. 302–306 (session 3: Resources and Environment).
Manuela, R., Heinemeyers, O., Munch, J. C., and Kaiser, E. A.: 1999, ‘Spatial Heterogeneity within the Plough Layer: High Variability of N2O Emission Rates’, Soil Biol. Biochem.
31, 167–173.
Google Scholar
Malhi, S. S., Grant, C. A., Johnston, A. M., and Gill, K. S.: 2001, ‘Nitrogen FertilizationManagement for No-till Cereal Production in the Canadian Great Plains: A Review’, Soil Till. Res.
60, 101–122.
Google Scholar
Mosier, A. R.: 1994, ‘Nitrous Oxide Emissions from Agricultural Soils’, Fert. Res.
38, 191–200.
Google Scholar
Rudaz, A. O., Walti, E., Kyburz, G., Lehmann, P., and Fuhrer, J.: 1999, ‘Temporal Variation in N2O and N2 Fluxes from a Permanent Pasture in Switzerland in Relation to Management, Soil Water Content and Soil Temperature’, Agricult. Ecosyst. Environ.
73, 83–91.
Google Scholar
Skiba, U. and Smith, K. A.: 2000, ‘The Control of Nitrous Oxide Emissions from Agricultural and Natural Soils’, Chemosphere-Global Change Sci.
2, 379–386.
Google Scholar
Smith, W., Desjardins, R. L., and Pattey, E.: 2000, ‘The Net Flux of Carbon from Agricultural Soils in Canada 1970-2010’, Global Change Biol.
6, 557–568.
Google Scholar
Smith, W. N., Desjardins, R. L., and Grant, B.: 2001, ‘Estimated Changes in Soil Carbon Associated with Agricultural Practices in Canada’, Can. J. Soil Sci.
81, 221–227.
Google Scholar
Smith, W. N., Desjardins, R. L., Grant, B., Li, C., Corre, M., Rochette, P., and Lemke, R.: 2002, ‘Testing the DNDC Model Using N2O Emissions at Two Experimental Sites’, Can. J. Soil Sci.
82, 365–374.
Google Scholar
Walsh, L. M.: 1970, ‘Let's Take Another Look at Autumn Fertilizing’, Crops Soils
22, 8–9.
Google Scholar
Watson, R. T., Rodhe, H., Oeschger, H., and Siegenthaler, U.: 1990, ‘Greenhouse Gases and Aerosols’, in Houghton, J. T., Jenkins, G. J., and Ephraums, J. J. (eds.), Climate Change: The IPCC Scientific Assessment, Cambridge University Press, U.K., p. 365.
Google Scholar
VandenBygaart, A. J., Gregorich, E. G., and Angers, D. A.: 2003, ‘Influence of Agricultural Management on Soil Organic Carbon: A Compendium and Assessment of Canadian Studies’, Can.J. Soil Sci., submitted. (Received 10 September 2002; in revised form 5 December 2003)