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The New Phytologist|June 16, 2015
Fine roots are the dominant source of recalcitrant plant litter in sugar maple-dominated northern hardwood forestsMengxue Xia, Alan F Talhelm, Kurt S PregitzerEcosystems (New York, N.Y.)|June 4, 2019
Long-Term Simulated Atmospheric Nitrogen Deposition Alters Leaf and Fine Root DecompositionMengxue Xia, Alan F Talhelm, Kurt S PregitzerSoil Biology & Biochemistry|June 11, 2019
Chronic nitrogen deposition influences the chemical dynamics of leaf litter and fine roots during decompositionMengxue Xia, Alan F Talhelm, Kurt S PregitzerEcology Letters|September 17, 2009
Species-specific responses to atmospheric carbon dioxide and tropospheric ozone mediate changes in soil carbonAlan F Talhelm, Kurt S Pregitzer, Donald R ZakEcology|February 10, 2011
Nitrogen turnover in the leaf litter and fine roots of sugar mapleKurt S Pregitzer, Donald R Zak, Alan F Talhelm, et al.Ecological Applications : a Publication of the Ecological Society of America|March 7, 2009
Simulated atmospheric NO3- deposition increases soil organic matter by slowing decompositionDonald R Zak, William E Holmes, Andrew J Burton, et al.Environmental Pollution (Barking, Essex : 1987)|December 19, 2022
Protection of forest ecosystems in the eastern United States from elevated atmospheric deposition of sulfur and nitrogen: A comparison of steady-state and dynamic model resultsTodd C McDonnell, Jennifer Phelan, Alan F Talhelm, et al.Global Change Biology|March 8, 2014
Elevated carbon dioxide and ozone alter productivity and ecosystem carbon content in northern temperate forestsAlan F Talhelm, Kurt S Pregitzer, Mark E Kubiske, et al.Global Change Biology|September 23, 2015
A dynamic leaf gas-exchange strategy is conserved in woody plants under changing ambient CO2 : evidence from carbon isotope discrimination in paleo and CO2 enrichment studiesSteven L Voelker, J Renée Brooks, Frederick C Meinzer, et al.Pageof 1