Hubbard Brook Bibliography
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“Incorporation Of 35 S-Sulfate Into Inorganic And Organic Constituents Of Two Forest Soils”. Soil Sci. Soc. Am. J. 50: 457-462.
. 1986. “A Simulation Model Of Sulfur Transformations In Forested Spodosols”. Biogeochemistry 2(4): 313-328.
. 1986. “Stable Sulfur Isotope Ratios As A Tool For Interpreting Ecosystem Sulfur Dynamics”. Water, Air, and Soil Pollution 28(1-2): 163-171.
. 1986. “Models Of Sulfur Dynamics In Forest And Grassland Ecosystems With Emphasis On Soil Processes”. Biogeochemistry 5: 133-163.
. 1988. “Effect Of Whole-Tree Harvesting On The Sulfur Dynamics Of A Forest Soil”. Soil Sci. Soc. Am. 53(3): 933-940.
. 1989. “Sulfur Constituents Along A Catena At The Hubbard Brook Experimental Forest”. Agronomy Abstracts, Annual Meeting: 342.
. 1990. “Sulphur Dynamics Of Forest Ecosystems”. In Sulphur Cycling on the Continents. SCOPE Vol. 48, Sulphur Cycling on the Continents. SCOPE Vol. 48, . J. Wiley & Sons Ltd, 215-254.
. 1992. “Biological Processes And Catchment Studies”. In Biogeochemistry of Small Catchments: A Tool for Environmental Research. SCOPE 51, Biogeochemistry of Small Catchments: A Tool for Environmental Research. SCOPE 51, Chichester, England: J. Wiley & Sons Ltd.
. 1994. . 1994.
“Sulphur”. In Biogeochemistry of Small Catchments: A Tool for Environmental Research. SCOPE 51, Biogeochemistry of Small Catchments: A Tool for Environmental Research. SCOPE 51, Chichester, England: J. Wiley & Sons Ltd, 229-254.
. 1994. “Climatic Control Of Nitrate Loss From Forested Watersheds In The Northeast United States”. Environ. Sci. Technol. 30(8): 2609-2612.
. 1996. “Responses Of Forest Ecosystems To Changing Sulfur Inputs”. In Sulfur in the Environment, Sulfur in the Environment, . New York: Marcel Dekker, Inc., 219-262.
. 1998. “Stable Sulfur Isotopic Biogeochemistry At Hubbard Brook Experimental Forest, New Hampshire”. Biogeochemistry 41: 259-275.
. 1998. “Use Of Stable Isotopes In Evaluating Sulfur Biogeochemistry Of Forest Ecosystems”. In Isotope Tracers in Catchment Hydrology, Isotope Tracers in Catchment Hydrology, . New York: Elsevier Science B.V., 490-518.
. 1998. “Changes In Soil Sulfur Constituents In A Forested Watershed 8 Years After Whole-Tree Harvesting”. Canadian Journal of Forest Research 29: 356-364.
. 1999. “Sources Of Stream Sulfate At The Hubbard Brook Experimental Forest: Long-Term Analyses Using Stable Isotopes”. Biogeochemistry 44: 281-299.
. 1999. “Assessing The Origin Of Sulfate- Deposition At The Hubbard Brook Experimental Forest”. J. Environ. Qual. 29: 759-767.
. 2000. “Application Of A Biogeochemical Model To Assess Historical And Future Changes In Atmospheric Deposition In The Northeast”. Abstract for NADP Technical Committee Meeting Proceedings: 29.
. 2001. “Comparative Evaluation On Nitrogen Saturation Of Forest Catchments In Japan And North America”. Water, Air and Soil Pollution 130: 649-654.
. 2001. “Linkages Of Nitrate Losses In Watersheds To Hydrological Processes”. Hydrological Processes 15: 3305-3307.
. 2001. “Use Of Stable Isotope Ratios For Evaluating Sulfur Sources And Losses At The Hubbard Brook Experimental Forest”. Water, Air and Soil Pollution 130: 75-86.
. 2001. “The Biogeochemistry Of Sulfur At Hubbard Brook”. Biogeochemistry 60(3): 235-316.
. 2002. “A Model To Simulate The Response Of A Northern Hardwood Forest Ecosystem To Changes In S Deposition”. Ecol. Appl. 12(1): 23-Aug.
. 2002. “Role Of Soil Freezing Events In Interannual Patterns Of Stream Chemistry At The Hubbard Brook Experimental Forest, New Hampshire”. Environmental Science & Technology 37: 1575-1580.
. 2003.