Related Experiment Video
Updated: Jul 5, 2025

08:09
Measuring and Mapping Patterns of Soil Erosion and Deposition Related to Soil Carbonate Concentrations Under Agricultural Management
Published on: September 12, 2017
11.8K
Total Soil CO2 Efflux from Drained Terric Histosols
Egidijus Vigricas1, Dovilė Čiuldienė1, Kęstutis Armolaitis1
1Institute of Forestry, Lithuanian Research Centre for Agriculture and Forestry, Liepų Str. 1, Girionys, LT-53101 Kaunas, Lithuania.
Plants (Basel, Switzerland)
|January 11, 2024
Summary
Drained Lithuanian organic soils release significant carbon dioxide (CO2). Soil and air temperature strongly influenced CO2 efflux, which was higher in grasslands than forests, indicating potential climate impacts.
Area of Science:
- Soil Science
- Environmental Science
- Ecology
Background:
- Histosols, particularly Terric Histosols rich in organic matter, cover 8-10% of Lithuania.
- Drained Histosols are significant contributors (>25%) to Lithuania's Land Use, Land Use Change, and Forestry (LULUCF) sector's greenhouse gas (GHG) emissions.
Purpose of the Study:
- To investigate carbon dioxide (CO2) fluxes in drained Terric Histosols.
- To analyze the relationship between soil CO2 efflux and environmental factors in Lithuania.
- To compare CO2 efflux rates between forested and grassland ecosystems on drained Histosols.
Main Methods:
- Measured total soil CO2 efflux and environmental parameters (temperature, soil chemistry, moisture, water table) in drained Terric Histosols.
- Conducted measurements across three native forest stands and perennial grasslands during the growing seasons of 2020 and 2021.
- Analyzed soil organic carbon and total nitrogen concentrations and their ratios.
Main Results:
- Total soil CO2 efflux showed the highest rates during summer months.
- Soil CO2 efflux was statistically significant and strongly correlated with soil and air temperature.
- Perennial grasslands exhibited approximately 30% higher total soil CO2 efflux compared to forested land.
Conclusions:
- Soil temperature is a key driver of CO2 efflux from drained Terric Histosols in Lithuania.
- Land cover type influences CO2 emissions, with grasslands showing higher efflux than forests.
- Further research is required to determine the net carbon dioxide balance of these organic soils.

