Tim Moore
Affiliations: | Geography | McGill University, Montreal, QC, Canada |
Website:
https://www.mcgill.ca/geography/people-0/mooreGoogle:
"Tim Moore"Bio:
https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.593157
Cross-listing: Terrestrial Ecology Tree
Children
Sign in to add traineeChristian Blodau | grad student | 2002 | McGill (Neurotree) |
Nathan Basiliko | grad student | 2004 | McGill (Chemistry Tree) |
Ellie M Goud | grad student | 2012-2014 | McGill (Neurotree) |
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Publications
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Watmough S, Gilbert-Parkes S, Basiliko N, et al. (2022) Variation in carbon and nitrogen concentrations among peatland categories at the global scale. Plos One. 17: e0275149 |
Shao S, Wu J, He H, et al. (2022) Ericoid mycorrhizal fungi mediate the response of ombrotrophic peatlands to fertilization: a modeling study. The New Phytologist |
Serk H, Nilsson MB, Bohlin E, et al. (2021) Global CO fertilization of Sphagnum peat mosses via suppression of photorespiration during the twentieth century. Scientific Reports. 11: 24517 |
Bear SE, Seward JD, Lamit LJ, et al. (2021) Beyond the usual suspects: methanogenic communities in eastern North American peatlands are also influenced by nickel and copper concentrations. Fems Microbiology Letters |
Seward J, Carson MA, Lamit LJ, et al. (2020) Peatland Microbial Community Composition Is Driven by a Natural Climate Gradient. Microbial Ecology |
Arsenault J, Talbot J, Moore TR. (2018) Environmental controls of C, N and P biogeochemistry in peatland pools. The Science of the Total Environment. 631: 714-722 |
Kalacska M, Arroyo-Mora J, Soffer R, et al. (2018) Estimating Peatland Water Table Depth and Net Ecosystem Exchange: A Comparison between Satellite and Airborne Imagery Remote Sensing. 10: 687 |
Arroyo-Mora J, Kalacska M, Soffer R, et al. (2018) Airborne Hyperspectral Evaluation of Maximum Gross Photosynthesis, Gravimetric Water Content, and CO2 Uptake Efficiency of the Mer Bleue Ombrotrophic Peatland Remote Sensing. 10: 565 |
Malhotra A, Moore TR, Limpens J, et al. (2018) Post-thaw variability in litter decomposition best explained by microtopography at an ice-rich permafrost peatland Arctic, Antarctic, and Alpine Research. 50: e1415622 |
Goud EM, Watt C, Moore TR. (2018) Plant community composition along a peatland margin follows alternate successional pathways after hydrologic disturbance Acta Oecologica. 91: 65-72 |