Reti Ranniku
Research Associate
Also affiliated: University of Copenhagen (2019–2026); University of Tartu (2021–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Reti Ranniku's research investigates greenhouse gas fluxes from terrestrial ecosystems, with a particular focus on forest soils and tree stems. Their work examines the dynamics of methane (CH4), carbon dioxide (CO2), and nitrous oxide (N2O) emissions under various environmental conditions, including long-term changes, freeze-thaw cycles, and dry and wet periods. Ranniku's studies have explored these fluxes in different forest types, such as riparian forests and drained peatland forests, and have also extended to the sub-Antarctic and tropical peatlands. A key aspect of this research involves understanding the role of soil microbiology in governing these greenhouse gas cycles. Ranniku has also investigated emissions from ditches in oil palm plantations and the contribution of tree stems as a source of CH4 and N2O, particularly during winter periods. Their work contributes to the broader understanding of ecosystem responses to environmental changes and their impact on global greenhouse gas budgets.
Metrics
- h-index: 6
- Publications: 35
- Citations: 130
Positions
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Research Associate 2026–presentUniversity of Arkansas at Fayetteville Biological and Agricultural Engineering ORCID
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Research fellow 2025–presentUniversity of Tartu Department of Geography ORCID
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Junior Researcher publications 2025–2026University of Arkansas at Fayetteville ORCID
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Post-doctoral Fellow 2024–2026University of Arkansas at Fayetteville Biological and Agricultural Engineering ORCID
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Junior Researcher 2022–2024University of Tartu Department of Geography ORCID
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PhD Student 2020–2024University of Tartu Department of Geography ORCID
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Research and Laboratory Assistant 2019–2020University of Copenhagen Centre for Permafrost ORCID
Selected Publications
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Methane exchange in a California oak savanna: insights from tree stem, soil, and ecosystem fluxes (2026)
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Comparative analysis of methane flux measurement techniques in rice fields under contrasting water management (2026)
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Methane Flux Dynamics in a California Oak Savanna (2026)
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Importance of N2O in greenhouse gas budgets of tropical peatlands (2025)
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Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island (2025)
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Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat (2025)
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Carbon Balance in Drained Hemiboreal Peatland Forests (2025)
Collaboration Network
Top Collaborators
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Importance of N2O in greenhouse gas budgets of tropical peatlands
- Methane Flux Dynamics in a California Oak Savanna
- Methane exchange in a California oak savanna: insights from tree stem, soil, and ecosystem fluxes
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Importance of N2O in greenhouse gas budgets of tropical peatlands
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Importance of N2O in greenhouse gas budgets of tropical peatlands
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Importance of N2O in greenhouse gas budgets of tropical peatlands
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
- Nitrogen cycling genes abundance in soil and aboveground compartments of tropical peatland cloud forests and a wetland on Réunion Island
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Carbon Balance in Drained Hemiboreal Peatland Forests
- Distinct microbial communities drive methane cycling in below- and above-ground compartments of tropical cloud forests growing on peat
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