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Soil Functional Responses to Excess Nitrogen Inputs at Global Scale

Bibliographic Data

ID10889010
AuthorsMark Adams (0000-0003-0214-8618), Mark Alexander Adams (0000-0001-8626-9227), Phil Ineson, Daniel Binkley (0000-0002-0992-8425), Dan Binkley, Georg Cadisch (0000-0003-0972-3734), Naoko Tokuchi (0000-0001-5508-5951), Mary C Scholes (0000-0001-5762-9537), Mary Scholes, Kevin Hicks (0000-0002-9568-4606), Kevin G Hicks (0000-0001-5067-7608)
Year2004
Volume33
Issue8
Pages530
Publication date2004-01-01
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueAMBIO (JOURNAL)
Journal identifiersISSN: 0044-7447 • E-ISSN: 1654-7209
PublisherAmerican Bryological and Lichenological Society (PUBLISHER • US)
DOI10.1639/0044-7447(2004)033[0530:sfrten]2.0.co;2
OpenAlexW4252092670
LanguageEN
Citations received1
References cited68

There is little evidence that nitrogen (N) cycling in the highly weathered, low-phosphorus (P), acidic soils found in Southern Hemisphere continents will differ greatly from that in North America and Europe. Evidence from the ‘south’ shows: the similarity in forms and temporal patterns in losses of N from different land uses; that the C:N ratios of the forest floor/litter layer from different continents are strongly predictive of a range of processes on a global scale; that generalizations based on Northern Hemisphere experience of the impact of N additions to ‘P-limited’ ecosystems are likely to fail for southern ecosystems where anatomical and physiological adaptation of native plants to low-P soils makes questionable the concept of ‘P-limitation’; that the greatest threats in the ‘south’ are probably changes in land use that may greatly increase N inputs and turnover; that localized increases in N inputs produce similar effects to those seen in the ‘north’.

Agronomy · Atmospheric sciences · Biogeochemical cycle · Biology · Cycling · Ecosystem · Forest floor · Geography · Litter · Nitrogen · Nitrogen Cycle · Northern Hemisphere · Range (aeronautics) · Scale (ratio) · Soil water · Southern Hemisphere · Chemistry · Ecology · Environmental Science · Forestry · Geology · Peatlands and Wetlands Ecology · Soil and Water Nutrient Dynamics · Soil Carbon and Nitrogen Dynamics · Soil Science

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    Open Access•Linda L Handley, Amy T Austin et al.•Australian Journal of Plant…•1999

  • The Nitrogen Cascade

    James N Galloway, J D Aber et al.•BioScience•2003

Unique citing works1
Citations per year0,11
Citation span2017 - 2017 (1)
Citation velocityhistorical
Highly citedNo

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