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Part 2. Modelling carbon turnover.
Inhibition of nitrification alters carbon turnover in the patagonian steppe.
Our findings provide insights on selective carbon turnover by soil Bacillus species.
We seek to understand some of the important abiotic chemical reaction pathways responsible for carbon turnover.
Kinsey, D. & Davies, P. Carbon Turnover, Calcification and Growth in Coral Reefs (Elsevier, 1979).
Lydia's research takes her to the Alaskan Arctic, where she studies soil carbon turnover and greenhouse gas emissions.
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Soil aggregation and microbial activities within the aggregates are important factors regulating soil carbon (C) turnover.
Cutover peatlands are often rapidly colonised by pioneer plant species, which have the potential to affect key ecosystem processes such as carbon (C) turnover.
The knowledge of tree species effects on soil organic carbon (C) turnover based on rigorous experimental designs is limited for common European deciduous tree species.
Spatial controls of soil organic carbon (SOC) turnover are not well understood.
Hobbie, S. E., Schimel, J. P., Trumbore, S. E. & Randerson, J. R. Controls over carbon storage and turnover in high-latitude soils.
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