Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Erin R Delaria"'
Autor:
Benjamin Poulter, Francis M Adams-Metayer, Cibele Amaral, Abigail Barenblitt, Anthony Campbell, Sean P Charles, Rosa Maria Roman-Cuesta, Rocco D’Ascanio, Erin R Delaria, Cheryl Doughty, Temilola Fatoyinbo, Jonathan Gewirtzman, Thomas F Hanisco, Moshema Hull, S Randy Kawa, Reem Hannun, David Lagomasino, Leslie Lait, Sparkle L Malone, Paul A Newman, Peter Raymond, Judith A Rosentreter, Nathan Thomas, Derrick Vaughn, Glenn M Wolfe, Lin Xiong, Qing Ying, Zhen Zhang
Publikováno v:
Environmental Research Letters, Vol 18, Iss 7, p 075009 (2023)
The BlueFlux field campaign, supported by NASA’s Carbon Monitoring System, will develop prototype blue carbon products to inform coastal carbon management. While blue carbon has been suggested as a nature-based climate solution (NBS) to remove carb
Externí odkaz:
https://doaj.org/article/1d87724c816945738bac74f55ea1c8fa
Autor:
Jinsol Kim, Alexander J. Turner, Helen L. Fitzmaurice, Erin R. Delaria, Catherine Newman, Paul J. Wooldridge, Ronald C. Cohen
Publikováno v:
Environmental Science & Technology. 56:3925-3931
Publikováno v:
Environmental Science & Technology Letters. 9:186-190
Autor:
Catherine Newman, Paul J. Wooldridge, Ronald C. Cohen, Helen Fitzmaurice, Jinsol Kim, K. A. Worthington, Erin R. Delaria
Publikováno v:
Atmospheric Measurement Techniques. 14:5487-5500
The majority of global anthropogenic CO2 emissions originate in cities. We have proposed that dense networks are a strategy for tracking changes to the processes contributing to urban CO2 emissions and suggested that a network with ∼ 2 km measureme
Publikováno v:
Atmospheric Chemistry and Physics. 20:14023-14041
Both canopy-level field measurements and laboratory studies suggest that uptake of NO2 through the leaf stomata of vegetation is a significant sink of atmospheric NOx. However, the mechanisms of this foliar NO2 uptake and their impact on NOx lifetime
Publikováno v:
ACS Earth and Space Chemistry. 4:2162-2170
Acyl peroxynitrates are formed in the atmosphere through the oxidation of NOx and are treated as temporary NOx sinks because they typically decompose to rerelease NOx on the time scale of a few hou...
Autor:
Erin R. Delaria, Ronald C. Cohen
Publikováno v:
Atmospheric Chemistry and Physics. 20:2123-2141
Foliar deposition of NO2 removes a large fraction of the global soil-emitted NOx. Understanding the mechanisms of NOx foliar loss is important for constraining surface ozone, constraining NOx mixing ratios, and assessing the impacts of nitrogen input
Autor:
Ronald C. Cohen, Catherine Newman, Alexander J. Turner, Erin R. Delaria, Paul J. Wooldridge, Helen Fitzmaurice, Katherine Chan, Jinsol Kim
Transportation represents the largest sector of anthropogenic CO2 emissions in urban areas in the United States. Timely reductions in urban transportation emissions are critical to reaching climate goals set by international treaties, national polici
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e11a649bd49fd17501a97d5190581827
https://doi.org/10.5194/acp-2021-808
https://doi.org/10.5194/acp-2021-808
Publikováno v:
Atmospheric Chemistry and Physics. 18:14161-14173
NO2 foliar deposition through the stomata of leaves has been identified as a significant sink of NOx within a forest canopy. In this study, we investigated NO2 and NO exchange between the atmosphere and the leaves of the native California oak tree Qu