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Nitrous oxide emission from denitrification in stream and river networks
Jake J. Beaulieu
, Jennifer L. Tank
, Stephen K. Hamilton
, Wilfred M. Wollheim
,
Robert O. Hall
, Patrick J. Mulholland
, Bruce J. Peterson
, Linda R. Ashkenas
, Lee W. Cooper
, Clifford N. Dahm
, Walter K. Dodds
, Nancy B. Grimm
, Sherri L. Johnson
, William H. McDowell
, Geoffrey C. Poole
, H. Maurice Valett
, Clay P. Arango
, Melody J. Bernot
, Amy J. Burgin
, Chelsea L. Crenshaw
Ashley M. Helton, Laura T. Johnson, Jonathan M. O'Brien, Jody D. Potter, Richard W. Sheibley, Daniel J. Sobota, Suzanne M. Thomas
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Flathead Lake Biological Station
Division of Biological and Biomedical Sciences
University of Notre Dame
United States Environmental Protection Agency
Michigan State University
University of New Hampshire
Oak Ridge National Laboratory
University of Tennessee, Knoxville
The University of Chicago
Oregon State University
University of Maryland Center for Environmental Science
University of New Mexico
Kansas State University
Arizona State University
United States Department of Agriculture
Montana State University
Central Washington University
Ball State University
Wright State University
University of Georgia
Indiana University Bloomington
University of Canterbury
United States Geological Survey
Washington State University Vancouver
Research output
:
Contribution to journal
›
Article
›
peer-review
655
Scopus citations
Overview
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Earth and Planetary Sciences
Nitrous Oxide
100%
Emissions
100%
Nitrous Oxide
100%
Denitrification
100%
United States
6%
Headwater
6%
Climate Change
6%
Intergovernmental Panel on Climate Change
6%
Flowing Water
6%
Greenhouse Gas
6%
Nitrification
6%
Tracer
6%
Radioactive Tracer
6%
Biochemistry, Genetics and Molecular Biology
Nitrous Oxide
100%
Denitrification
100%
Nitrification
20%
Agricultural and Biological Sciences
Denitrification
100%
Climate Change
40%
Nitrification
20%
Multiple Land Use
20%
Greenhouse Gas
20%
Immunology and Microbiology
Denitrification
100%
Nitrification
20%
Chemical Engineering
Nitrification
100%