Nitrogen Turnover in Drying Sediments of an Amazon Floodplain Lake
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Summary
The transition of a lake sediment from flooded to dry conditions was studied with respect to microbial nitrogen turnover, showing that coupled nitrification–denitrification was responsible for the nitrogen loss.
- Type
- article
- Published
- 2005-07-27
- Cited by
- 23
- References
- 42
- OpenAlex
- https://openalex.org/W16047095
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30945486
Keywords
Political science
References
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- Factors influencing the population of methanogenic bacteria and the initiation of methane production upon flooding of paddy soil
- A most beautiful polar low. A case study of a polar low development in the Bear Island region
- Effects of soil variables and season on the production and consumption of nitric oxide in oxic soils
- Soil Microsites as a Source of Denitrification Variability1
- Nitrogen dynamics in seasonally flooded soils in the Amazon floodplain
- Sequential reduction processes and initiation of CH4 production upon flooding of oxic upland soils
- Effect of alternate aerobic and anaerobic conditions on redox potential, organic matter decomposition and nitrogen loss in a flooded soil
- Kinetics of nitric oxide consumption in tropical soils under oxic and anoxic conditions
- Dual-season mapping of wetland inundation and vegetation for the central Amazon basin
- The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate
Cited by
- SPATIAL AND TEMPORAL PATTERNS OF NITRIFICATION RATES IN FORESTED FLOODPLAIN WETLAND SOILS OF UPPER MISSISSIPPI RIVER POOL 8
- Effects of flooding cycles in the Pantanal on the turnover of soil nitrogen pools and emission of N 2 O
- The effects of drying on sediment nitrogen content in a Mediterranean intermittent stream: a microcosms study
- In-stream biogeochemical processes of a temporary river.
- Buried organic-rich horizons: their role as nitrogen sources in stream riparian zones
- Effects of amendment with olive mill by-products on soils revealed by nitrifying bacteria
- Extreme Emission of N2O from Tropical Wetland Soil (Pantanal, South America)
- Methane and Nitrous Oxide Emissions from Natural Sources
- Emissions from dry inland waters are a blind spot in the global carbon cycle
- Denitrification, carbon and nitrogen emissions over the Amazonian wetlands
- Denitrification and associated nitrous oxide and carbon dioxide emissions from the Amazonian wetlands
- Regulation of CO2 fluxes along gradients of water saturation in irrigation canal sediments
- Effects of dry-wet cycles on nitrous oxide emissions in freshwater sediments: a synthesis
- Carbon and Beyond: The Biogeochemistry of Climate in a Rapidly Changing Amazon
- Dry-Wet Cycles Affect Nitrous Oxide Emissions Across Aquatic-Terrestrial Interfaces: A Mesocosms Study
- Greenhouse gas dynamics in river networks fragmented by drying and damming
- Rewetting as a hot-moment for NO3- and NH4+ consumption in sediment of non-perennial rivers in the semiarid region
- Plant controls over tropical wetland nitrous oxide dynamics: a review
- Extreme emission of n 2 o from tropical wetland soil (pantanal, South America)
- Interactive comment on “ Effects of flooding cycles in the Pantanal on the turnover of soil nitrogen pools and emission of N 2 O ” by L . Liengaard et al
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