Aquatic Priming Effects in the York River Estuary and Implications for Dissolved Organic Carbon Mineralization
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- Published
- 2014-01-01
- Cited by
- 0
- References
- 83
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:127404382
References
- Enhanced transfer of terrestrially derived carbon to the atmosphere in a flooding event
- Influence of Easily Degradable Naturally Occurring Carbon Substrates on Biodegradation of Monosubstituted Phenols by Aquatic Bacteria
- Carbon in catchments: connecting terrestrial carbon losses with aquatic metabolism
- Event controlled DOC export from forested watersheds
- Stimulation of Different Functional Groups of Bacteria by Various Plant Residues as a Driver of Soil Priming Effect
- Iron traps terrestrially derived dissolved organic matter at redox interfaces
- Priming effects : interactions between living and dead organic matter
- Temporal variability in sources of dissolved organic carbon in the lower Mississippi river
- Bioremediation of high organic load lagoon sediments: compost addition and priming effects.
- Priming effects in different soil types induced by fructose, alanine, oxalic acid and catechol additions
- Review of mechanisms and quantification of priming effects.
- Riverine export of aged terrestrial organic matter to the North Atlantic Ocean
- No evidence of aquatic priming effects in hyporheic zone microcosms
- Fungi mediate long term sequestration of carbon and nitrogen in soil through their priming effect
- Stability of organic carbon in deep soil layers controlled by fresh carbon supply
- A mechanistic-based framework to understand how dissolved organic carbon is processed in a large fluvial lake
- Calculating age and residence time in the tidal York River using three-dimensional model experiments
- Mechanisms of real and apparent priming effects and their dependence on soil microbial biomass and community structure: critical review
- Bacterioplankton dynamics in the York River estuary: Primary influence of temperature and freshwater inputs
- Global biogeochemical cycles: progress and problems
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