Carmody K. McCalley, Ph.D.
Affiliations: | 2010 | Cornell University, Ithaca, NY, United States |
Area:
Biogeochemistry, Ecology Biology, Climate ChangeGoogle:
"Carmody McCalley"Mean distance: (not calculated yet)
Parents
Sign in to add mentorJed P. Sparks | grad student | 2010 | Cornell | |
(Sources and controls of reactive nitrogen gas emissions from a Mojave Desert ecosystem.) |
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Publications
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Ellenbogen JB, Borton MA, McGivern BB, et al. (2023) Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrost. Msystems. e0069823 |
Varner RK, Crill PM, Frolking S, et al. (2021) Permafrost thaw driven changes in hydrology and vegetation cover increase trace gas emissions and climate forcing in Stordalen Mire from 1970 to 2014. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 380: 20210022 |
McCalley CK. (2020) Methane-eating microbes Nature Climate Change. 10: 275-276 |
Perryman CR, McCalley CK, Malhotra A, et al. (2020) Thaw Transitions and Redox Conditions Drive Methane Oxidation in a Permafrost Peatland Journal of Geophysical Research: Biogeosciences. 125 |
Chang K, Riley WJ, Brodie EL, et al. (2019) Methane Production Pathway Regulated Proximally by Substrate Availability and Distally by Temperature in a High‐Latitude Mire Complex Journal of Geophysical Research: Biogeosciences. 124: 3057-3074 |
Woodcroft BJ, Singleton CM, Boyd JA, et al. (2018) Genome-centric view of carbon processing in thawing permafrost. Nature |
Singleton CM, McCalley CK, Woodcroft BJ, et al. (2018) Methanotrophy across a natural permafrost thaw environment. The Isme Journal |
Palace M, Herrick C, DelGreco J, et al. (2018) Determining Subarctic Peatland Vegetation Using an Unmanned Aerial System (UAS) Remote Sensing. 10: 1498 |
Mondav R, McCalley CK, Hodgkins SB, et al. (2017) Microbial network, phylogenetic diversity and community membership in the active layer across a permafrost thaw gradient. Environmental Microbiology |
Deng J, McCalley CK, Frolking S, et al. (2017) Adding stable carbon isotopes improves model representation of the role of microbial communities in peatland methane cycling Journal of Advances in Modeling Earth Systems. 9: 1412-1430 |