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[2]
Soil freeze–thaw cycle experiments: Trends; methodological weaknesses and suggested improvements.[J].Hugh A.L. Henry.Soil Biology and Biochemistry.2007, 5
[3]
CO 2 and N 2 O emissions from gleyic soils in the Russian tundra and a German forest during freeze–thaw periods—a microcosm study.[J].B. Ludwig;R. Teepe;V. Lopes de Gerenyu;H. Flessa.Soil Biology and Biochemistry.2006, 12
[4]
Soil water content and freezing temperature affect freeze–thaw related N<Subscript>2</Subscript>O production in organic soil.[J].Hannu T. Koponen;Pertti J. Martikainen.Nutrient Cycling in Agroecosystems.2004, 3
[5]
Microbial growth under the snow: Implications for nutrient and allelochemical availability in temperate soils.[J].S.K. Schmidt;D.A. Lipson.Plant and Soil.2004, 1
[6]
Freeze–thaw regime effects on carbon and nitrogen dynamics in sub-arctic heath tundra mesocosms.[J].Paul Grogan;Anders Michelsen;Per Ambus;Sven Jonasson.Soil Biology and Biochemistry.2004, 4
[7]
Nitrous oxide production in a forest soil at low temperatures – processes and environmental controls.[J]..FEMS Microbiology Ecology.2004, 3
[8]
Seasonal trends of soil CO 2 dynamics in a soil subject to freezing.[J].Bo Elberling.Journal of Hydrology.2003, 1
[10]
Sources of C and N contributing to the flush in mineralization upon freeze–thaw cycles in soils.[J].Anke Herrmann;Ernst Witter.Soil Biology and Biochemistry.2002, 10

