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Centennial-scale reductions in nitrogen availability in temperate forests of the United States
by
McNeil, B. E.
, Elmore, A. J.
, Pederson, N.
, Mack, M. C.
, Perakis, S. S.
, Battles, J. J.
, Craine, J. M.
, McLauchlan, K. K.
, Gerhart, L. M.
, Higuera, P. E.
, Nelson, D. M.
in
631/158/2445
/ 704/158/2454
/ 704/47/4112
/ Carbon cycle
/ Carbon dioxide
/ Climate
/ Climate change
/ Forests
/ Humanities and Social Sciences
/ Humans
/ Isotopes
/ multidisciplinary
/ Nitrogen
/ Nitrogen - analysis
/ Nitrogen Cycle
/ Science
/ Science (multidisciplinary)
/ Spatio-Temporal Analysis
/ Temperate forests
/ United States
/ Wood - chemistry
2017
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Centennial-scale reductions in nitrogen availability in temperate forests of the United States
by
McNeil, B. E.
, Elmore, A. J.
, Pederson, N.
, Mack, M. C.
, Perakis, S. S.
, Battles, J. J.
, Craine, J. M.
, McLauchlan, K. K.
, Gerhart, L. M.
, Higuera, P. E.
, Nelson, D. M.
in
631/158/2445
/ 704/158/2454
/ 704/47/4112
/ Carbon cycle
/ Carbon dioxide
/ Climate
/ Climate change
/ Forests
/ Humanities and Social Sciences
/ Humans
/ Isotopes
/ multidisciplinary
/ Nitrogen
/ Nitrogen - analysis
/ Nitrogen Cycle
/ Science
/ Science (multidisciplinary)
/ Spatio-Temporal Analysis
/ Temperate forests
/ United States
/ Wood - chemistry
2017
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Centennial-scale reductions in nitrogen availability in temperate forests of the United States
by
McNeil, B. E.
, Elmore, A. J.
, Pederson, N.
, Mack, M. C.
, Perakis, S. S.
, Battles, J. J.
, Craine, J. M.
, McLauchlan, K. K.
, Gerhart, L. M.
, Higuera, P. E.
, Nelson, D. M.
in
631/158/2445
/ 704/158/2454
/ 704/47/4112
/ Carbon cycle
/ Carbon dioxide
/ Climate
/ Climate change
/ Forests
/ Humanities and Social Sciences
/ Humans
/ Isotopes
/ multidisciplinary
/ Nitrogen
/ Nitrogen - analysis
/ Nitrogen Cycle
/ Science
/ Science (multidisciplinary)
/ Spatio-Temporal Analysis
/ Temperate forests
/ United States
/ Wood - chemistry
2017
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Centennial-scale reductions in nitrogen availability in temperate forests of the United States
Journal Article
Centennial-scale reductions in nitrogen availability in temperate forests of the United States
2017
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Overview
Forests cover 30% of the terrestrial Earth surface and are a major component of the global carbon (C) cycle. Humans have doubled the amount of global reactive nitrogen (N), increasing deposition of N onto forests worldwide. However, other global changes—especially climate change and elevated atmospheric carbon dioxide concentrations—are increasing demand for N, the element limiting primary productivity in temperate forests, which could be reducing N availability. To determine the long-term, integrated effects of global changes on forest N cycling, we measured stable N isotopes in wood, a proxy for N supply relative to demand, on large spatial and temporal scales across the continental U.S.A. Here, we show that forest N availability has generally declined across much of the U.S. since at least 1850 C.E. with cool, wet forests demonstrating the greatest declines. Across sites, recent trajectories of N availability were independent of recent atmospheric N deposition rates, implying a minor role for modern N deposition on the trajectory of N status of North American forests. Our results demonstrate that current trends of global changes are likely to be consistent with forest oligotrophication into the foreseeable future, further constraining forest C fixation and potentially storage.
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