Peatlands in a eutrophic world – Assessing the state of a poor fen-bog transition in southern Ontario, Canada, after long term nutrient input and altered hydrological conditions
Author:
Funder
Deutsche Forschungsgemeinschaft
University of Münster through “Drittmittelanschubfinanzierung”
Publisher
Elsevier BV
Subject
Soil Science,Microbiology
Reference57 articles.
1. Growth-limiting nutrients in Sphagnum-dominated bogs subject to low and high atmospheric nitrogen supply;Aerts;Journal of Ecology,1992
2. Long-term water table manipulations alter peatland gaseous carbon fluxes in Northern Michigan;Ballantyne;Wetlands Ecology and Management,2014
3. 2017 Plant functional types, nutrients and hydrology drive carbon cycling along a transect in an anthropogenically altered Canadian peatland complex;Berger;Biogeosciences Discussions,2017
4. High nitrogen deposition alters the decomposition of bog plant litter and reduces carbon accumulation;Bragazza;Global Change Biology,2012
5. Effects of nutrient addition on leaf chemistry, morphology, and photosynthetic capacity of three bog shrubs;Bubier;Oecologia,2011
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