Coastal Forest Seawater Exposure Increases Stem Methane Concentration

Author:

Norwood Matthew J.1ORCID,Ward Nicholas D.12ORCID,McDowell Nate G.34,Myers‐Pigg Allison N.15ORCID,Bond‐Lamberty Ben6ORCID,Indivero Julia17ORCID,Pennington Stephanie6ORCID,Wang Wenzhi38ORCID,Kirwan Matt9ORCID,Hopple Anya M.410,Megonigal J. Patrick10ORCID

Affiliation:

1. Marine and Coastal Research Laboratory Pacific Northwest National Laboratory Sequim WA USA

2. School of Oceanography University of Washington Seattle WA USA

3. Atmospheric Sciences and Global Change Division Pacific Northwest National Laboratory Richland WA USA

4. School of Biological Sciences Washington State University Pullman WA USA

5. Biological Sciences Division Pacific Northwest National Laboratory Richland WA USA

6. Joint Global Change Research Institute Pacific Northwest National Laboratory College Park MD USA

7. Now at School of Aquatic and Fishery Sciences University of Washington Seattle WA USA

8. Now at Institute of Mountain Hazards and Environment Chengdu China

9. Virginia Institute of Marine Science Gloucester Point VA USA

10. Smithsonian Environmental Research Center Edgewater MD USA

Publisher

American Geophysical Union (AGU)

Subject

Paleontology,Atmospheric Science,Soil Science,Water Science and Technology,Ecology,Aquatic Science,Forestry

Reference73 articles.

1. Global Journal of Environmental Science and Management Soil salinity and nutrients pattern along a distance gradient in coastal region;Ahmed S.;Global Journal of Environmental Science and Management,2019

2. Methane emissions from tree stems: a new frontier in the global carbon cycle

3. Contribution of anthropogenic and natural sources to atmospheric methane variability

4. Fluxes of greenhouse gases between soils and the atmosphere in a temperate forest following a simulated hurricane blowdown

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