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Microbial Ecology|June 30, 2009
The impact of simulated sulfate deposition on peatland testate amoebaeRichard Payne, Vincent Gauci, Dan J CharmanGlobal Change Biology|October 28, 2018
Tree stem bases are sources of CH<sub>4</sub> and N<sub>2</sub> O in a tropical forest on upland soil during the dry to wet season transitionBertie Welch, Vincent Gauci, Emma J SayerEcology and Evolution|March 12, 2024
Water table depth and plant species determine the direction and magnitude of methane fluxes in floodplain meadow soilsMike Peacock, Clare Lawson, David Gowing, et al.The Science of the Total Environment|November 17, 2016
Management effects on greenhouse gas dynamics in fen ditchesMike Peacock, Luke M Ridley, Chris D Evans, et al.Environmental Science. Processes & Impacts|June 9, 2015
Investigations of freezing and cold storage for the analysis of peatland dissolved organic carbon (DOC) and absorbance propertiesMike Peacock, Chris Freeman, Vincent Gauci, et al.Tropical Ecology|December 22, 2025
Plant controls over tropical wetland nitrous oxide dynamics: a reviewNicholas T Girkin, Hannah V Cooper, Scott J Davidson, et al.Waste Management & Research : the Journal of the International Solid Wastes and Public Cleansing Association, ISWA|April 5, 2022
Methane emissions from trees planted on a closed landfill siteAlice Fraser-McDonald, Carl Boardman, Toni Gladding, et al.The New Phytologist|December 21, 2012
Trees are major conduits for methane egress from tropical forested wetlandsSunitha R Pangala, Sam Moore, Edward R C Hornibrook, et al.Global Change Biology|February 10, 2015
The contribution of trees to ecosystem methane emissions in a temperate forested wetlandSunitha R Pangala, Edward R C Hornibrook, David J Gowing, et al.Pageof 3