Zobrazeno 1 - 10
of 21
pro vyhledávání: '"Luke D. Schiferl"'
Autor:
Sarah M Ludwig, Susan M Natali, John D Schade, Margaret Powell, Greg Fiske, Luke D Schiferl, Roisin Commane
Publikováno v:
Environmental Research Letters, Vol 18, Iss 6, p 064019 (2023)
In the Arctic waterbodies are abundant and rapid thaw of permafrost is destabilizing the carbon cycle and changing hydrology. It is particularly important to quantify and accurately scale aquatic carbon emissions in arctic ecosystems. Recently availa
Externí odkaz:
https://doaj.org/article/650292b5767b491a9d8b311525c906f7
High resolution modeling of vegetation reveals large summertime biogenic CO2 fluxes in New York City
Publikováno v:
Environmental Research Letters, Vol 17, Iss 12, p 124031 (2022)
Cities are beginning to monitor atmospheric carbon dioxide (CO _2 ) to assess the efficacy of their climate policies. However, changes in anthropogenic CO _2 emissions must be separated from biospheric CO _2 fluxes which have a large seasonal cycle.
Externí odkaz:
https://doaj.org/article/7c80405eca2649538830b20fea3d083e
Autor:
Madankui Tao, Arlene M. Fiore, Xiaomeng Jin, Luke D. Schiferl, Róisín Commane, Laura M. Judd, Scott Janz, John T. Sullivan, Paul J. Miller, Alexandra Karambelas, Sharon Davis, Maria Tzortziou, Lukas Valin, Andrew Whitehill, Kevin Civerolo, Yuhong Tian
Publikováno v:
Environmental Science & Technology. 56:15312-15327
Understanding the local-scale spatial and temporal variability of ozone formation is crucial for effective mitigation. We combine tropospheric vertical column densities (VCD
Autor:
Róisín Commane, Luke D. Schiferl
Publikováno v:
Chem. 8:910-923
Autor:
Jennifer D Watts, Susan M Natali, Christina Minions, Dave Risk, Kyle Arndt, Donatella Zona, Eugénie S Euskirchen, Adrian V Rocha, Oliver Sonnentag, Manuel Helbig, Aram Kalhori, Walt Oechel, Hiroki Ikawa, Masahito Ueyama, Rikie Suzuki, Hideki Kobayashi, Gerardo Celis, Edward A G Schuur, Elyn Humphreys, Yongwon Kim, Bang-Yong Lee, Scott Goetz, Nima Madani, Luke D Schiferl, Roisin Commane, John S Kimball, Zhihua Liu, Margaret S Torn, Stefano Potter, Jonathan A Wang, M Torre Jorgenson, Jingfeng Xiao, Xing Li, Colin Edgar
Publikováno v:
Environmental Research Letters, Vol 16, Iss 8, p 084051 (2021)
Soil respiration (i.e. from soils and roots) provides one of the largest global fluxes of carbon dioxide (CO _2 ) to the atmosphere and is likely to increase with warming, yet the magnitude of soil respiration from rapidly thawing Arctic-boreal regio
Externí odkaz:
https://doaj.org/article/b37e04ec532d40f8a85d3641d0aa8781
Autor:
Erik J L Larson, Luke D Schiferl, Róisín Commane, J William Munger, Anna T Trugman, Takeshi Ise, Eugénie S Euskirchen, Steve Wofsy, Paul M Moorcroft
Publikováno v:
Environmental Research Letters, Vol 17, Iss 1, p 014019 (2021)
An estimated 1700 Pg of carbon is frozen in the Arctic permafrost and the fate of this carbon is unclear because of the complex interaction of biophysical, ecological and biogeochemical processes that govern the Arctic carbon budget. Two key processe
Externí odkaz:
https://doaj.org/article/19a742de928b412392898f30e972e29b
Autor:
Jennifer D. Watts, Mary Farina, John S. Kimball, Luke D. Schiferl, Zhihua Liu, Kyle A. Arndt, Donatella Zona, Ashley Ballantyne, Eugénie S. Euskirchen, Frans‐Jan W. Parmentier, Manuel Helbig, Oliver Sonnentag, Torbern Tagesson, Janne Rinne, Hiroki Ikawa, Masahito Ueyama, Hideki Kobayashi, Torsten Sachs, Daniel F. Nadeau, John Kochendorfer, Marcin Jackowicz‐Korczynski, Anna Virkkala, Mika Aurela, Roisin Commane, Brendan Byrne, Leah Birch, Matthew S. Johnson, Nima Madani, Brendan Rogers, Jinyang Du, Arthur Endsley, Kathleen Savage, Ben Poulter, Zhen Zhang, Lori M. Bruhwiler, Charles E. Miller, Scott Goetz, Walter C. Oechel
Publikováno v:
Global Change Biology
Watts, J D, Farina, M, Kimball, J S, Schiferl, L D, Liu, Z, Arndt, K A, Zona, D, Ballantyne, A, Euskirchen, E S, Parmentier, F J W, Helbig, M, Sonnentag, O, Tagesson, T, Rinne, J, Ikawa, H, Ueyama, M, Kobayashi, H, Sachs, T, Nadeau, D F, Kochendorfer, J, Jackowicz-Korczynski, M, Virkkala, A, Aurela, M, Commane, R, Byrne, B, Birch, L, Johnson, M S, Madani, N, Rogers, B, Du, J, Endsley, A, Savage, K, Poulter, B, Zhang, Z, Bruhwiler, L M, Miller, C E, Goetz, S & Oechel, W C 2023, ' Carbon uptake in Eurasian boreal forests dominates the high-latitude net ecosystem carbon budget ', Global change biology, vol. 29, no. 7, pp. 1870-1889 . https://doi.org/10.1111/gcb.16553
Watts, J D, Farina, M, Kimball, J S, Schiferl, L D, Liu, Z, Arndt, K A, Zona, D, Ballantyne, A, Euskirchen, E S, Parmentier, F J W, Helbig, M, Sonnentag, O, Tagesson, T, Rinne, J, Ikawa, H, Ueyama, M, Kobayashi, H, Sachs, T, Nadeau, D F, Kochendorfer, J, Jackowicz-Korczynski, M, Virkkala, A, Aurela, M, Commane, R, Byrne, B, Birch, L, Johnson, M S, Madani, N, Rogers, B, Du, J, Endsley, A, Savage, K, Poulter, B, Zhang, Z, Bruhwiler, L M, Miller, C E, Goetz, S & Oechel, W C 2023, ' Carbon uptake in Eurasian boreal forests dominates the high-latitude net ecosystem carbon budget ', Global change biology, vol. 29, no. 7, pp. 1870-1889 . https://doi.org/10.1111/gcb.16553
Arctic-boreal landscapes are experiencing profound warming, along with changes in ecosystem moisture status and disturbance from fire. This region is of global importance in terms of carbon feedbacks to climate, yet the sign (sink or source) and magn
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4461e4ad51eaa211d3412d8695b054ba
https://gfzpublic.gfz-potsdam.de/pubman/item/item_5015680
https://gfzpublic.gfz-potsdam.de/pubman/item/item_5015680
Autor:
Luke D. Schiferl, Jennifer D. Watts, Erik J. L. Larson, Kyle A. Arndt, Sébastien C. Biraud, Eugénie S. Euskirchen, Jordan P. Goodrich, John M. Henderson, Aram Kalhori, Kathryn McKain, Marikate E. Mountain, J. William Munger, Walter C. Oechel, Colm Sweeney, Yonghong Yi, Donatella Zona, Róisín Commane
Publikováno v:
Biogeosciences
The continued warming of the Arctic could release vast stores of carbon into the atmosphere from high-latitude ecosystems, especially from thawing permafrost. Increasing uptake of carbon dioxide (CO2) by vegetation during longer growing seasons may p
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::d27ede89ad8a1a3af3d1fdebebf3ffbc
https://bg.copernicus.org/articles/19/5953/2022/
https://bg.copernicus.org/articles/19/5953/2022/
Autor:
Luke D. Schiferl, Jennifer D. Watts, Erik J. L. Larson, Kyle A. Arndt, Sébastien C. Biraud, Eugénie S. Euskirchen, John M. Henderson, Kathryn McKain, Marikate E. Mountain, J. William Munger, Walter C. Oechel, Colm Sweeney, Yonghong Yi, Donatella Zona, Róisín Commane
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::007d60ed9478cfbf10d32bb5fde0ce3b
https://doi.org/10.5194/bg-2022-167-supplement
https://doi.org/10.5194/bg-2022-167-supplement
Autor:
Edward A. G. Schuur, Christina Minions, Elyn Humphreys, Susan M. Natali, Adrian V. Rocha, M. Torre Jorgenson, Nima Madani, Hiroki Ikawa, Oliver Sonnentag, Manuel Helbig, Rikie Suzuki, Donatella Zona, Yongwon Kim, Zhihua Liu, Xing Li, John S. Kimball, Aram Kalhori, Kyle A. Arndt, Luke D Schiferl, Jonathan A. Wang, Jennifer D. Watts, S. Potter, Margaret S. Torn, Jingfeng Xiao, Dave Risk, Bang-Yong Lee, Walter C. Oechel, Masahito Ueyama, Hideki Kobayashi, Scott J. Goetz, Roisin Commane, Eugénie S. Euskirchen, Gerardo Celis, C. Edgar
Publikováno v:
Environmental Research Letters
Soil respiration (i.e. from soils and roots) provides one of the largest global fluxes of carbon dioxide (CO2) to the atmosphere and is likely to increase with warming, yet the magnitude of soil respiration from rapidly thawing Arctic-boreal regions
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2a5ba2f7d71a56085525a6af282af67a
https://gfzpublic.gfz-potsdam.de/pubman/item/item_5008276
https://gfzpublic.gfz-potsdam.de/pubman/item/item_5008276