Irene Lehner
Research engineer
Heterotrophic and rhizospheric respiration in coniferous forest soils along a latitudinal gradient
Author
Summary, in English
primary production (GPP) decreased from north to south in the Scots pine (Pinus sylvestris L.) and the Norway spruce (Picea abies (L.) Karst.) forests, with the exception of a mixed site, where the share of RR in GPP varied strongly between the years. RR per ground area and per root biomass were mainly independent of climate within the gradient. RH per ground area increased from north to south with temperature, while RH per soil C did not change with temperature. Soil moisture did not significantly affect the respiration components in the northernmost site, whereas soil moisture was positively connected with RH and negatively with RR in other Scots pine sites and positively connected with RR in pure Norway spruce stands. The dynamic ecosystem model LPJ-GUESS
was able to capture the seasonal dynamics of RH and RR at the sites, but overall accuracy varied markedly between the sites, as the model underestimated RH in the southern site and RR elsewhere. Our study provides knowledge about the nature of soil respiration components. The valuable insights can be used in more accurate land-ecosystem modelling of forest ecosystems.
Department/s
- Dept of Physical Geography and Ecosystem Science
- Centre for Environmental and Climate Science (CEC)
Publishing year
2022
Language
English
Publication/Series
Agricultural and Forest Meteorology
Volume
317
Document type
Article
Publisher
Elsevier
Topic
- Climate Science
- Meteorology and Atmospheric Sciences
Keywords
- Chamber measurements
- Land-surface modelling
- Soil carbon
- Soil respiration
- Trenching
- CO2 efflux
- Scots pine
- Norway spruce
- Forest soil
- Carbon cycle
- SDG 13 - Climate Action
- SDG 15 - Life on Land
Status
Published
ISBN/ISSN/Other
- ISSN: 1873-2240