The ^APhanerozoic Carbon Cycle¶
Berner. (2004). The ^APhanerozoic Carbon Cycle: CO2 and O2. Oxford University Press.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Biogeochemical Cycle
- The carbon cycle — atmosphere-ocean-biosphere exchange, terrestrial production and decomposition, the fossil reservoir, ocean-acidification chemistry, and anthropogenic combustion as a comparable-magnitude flux against gross land-atmosphere exchange. The nitrogen cycle — biological fixation, nitrification and denitrification, atmospheric deposition, and industrial Haber-Bosch fixation as a planetary-scale anthropogenic flux driving runoff and eutrophication. The phosphorus cycle — rock weathering, biological uptake, and sedimentation, distinctive for lacking an atmospheric reservoir, with mining and fertiliser application the human perturbation. The sulphur cycle — volcanic SO₂, marine DMS production, sulphate-aerosol climate forcing, and acid-rain chemistry. The water (hydrological) cycle — evaporation, condensation, precipitation, surface flow, infiltration, groundwater, glaciation, and ocean exchange. The oxygen cycle — the photosynthesis-respiration balance buffered by organic-carbon burial on the source side and by the oxidative weathering of old organic carbon and sulfides on the sink side, with the Great Oxygenation Event as the historical reset
This sourceBerner's treatment of the long-term carbon cycle through organic-matter and carbonate burial and weathering, with the oxidation of reduced carbon and sulfide as the complementary processes.
Supported in partVerified against the source
- The carbon cycle — atmosphere-ocean-biosphere exchange, terrestrial production and decomposition, the fossil reservoir, ocean-acidification chemistry, and anthropogenic combustion as a comparable-magnitude flux against gross land-atmosphere exchange. The nitrogen cycle — biological fixation, nitrification and denitrification, atmospheric deposition, and industrial Haber-Bosch fixation as a planetary-scale anthropogenic flux driving runoff and eutrophication. The phosphorus cycle — rock weathering, biological uptake, and sedimentation, distinctive for lacking an atmospheric reservoir, with mining and fertiliser application the human perturbation. The sulphur cycle — volcanic SO₂, marine DMS production, sulphate-aerosol climate forcing, and acid-rain chemistry. The water (hydrological) cycle — evaporation, condensation, precipitation, surface flow, infiltration, groundwater, glaciation, and ocean exchange. The oxygen cycle — the photosynthesis-respiration balance buffered by organic-carbon burial on the source side and by the oxidative weathering of old organic carbon and sulfides on the sink side, with the Great Oxygenation Event as the historical reset
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