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The increase of soil organic carbon as proposed by the “4/1000 initiative” is strongly limited by the status of soil development - A case study along a substrate age gradient in Central Europe

pmid: 29455134
During COP 21 in Paris 2015, several states and organizations agreed on the "4/1000" initiative for food security and climate. This initiative aims to increase world's soil organic carbon (SOC) stocks by 4‰ annually. The influence of soil development status on SOC dynamics is very important but usually not considered in studies. We analyse SOC accumulation under forest, grassland and cropping systems along a soil age gradient (10-17,000years) to show the influence of soil development status on SOC increase. SOC stocks (0-40cm) and accumulation rates along a chronosequence in alluvial soils of the Danube River in the Marchfeld (eastern Austria) were analysed. The analysed Fluvisols and Chernozems have been used as forest, grassland and cropland for decades or hundreds of years. The results showed that there is a fast build-up of OC stocks (0-40cm) in young soils with accumulation of ~1.3tha-1a-1 OC in the first 100years and ~0.5tha-1a-1 OC between 100 and 350years almost independent of land use. Chernozems with a sediment deposition age older than 5.000years have an accumulation ratemodern" and "modern" carbon indicating a fast carbon cycling. Carbon in subsoil is less exposed to decomposition and OC can be stored at long-time scales in the subsoil (14C age of 3670±35 BP). In view of the '4/1000' initiative, soils with constant carbon input (forest & grassland) fulfil the intended 4‰ growth rate of SOC stocks only in the first 60years of soil development. We proclaim that under the present climate in Central Europe, the increase of SOC stocks in soil is strongly affected by the state of soil development.
- University of Vienna Austria
- University of Vienna u:cris Austria
- University of Natural Resources and Life Sciences Austria
DYNAMICS, Chronosequence, SEQUESTRATION, CAPACITY, SDG 13 - Climate Action, Climate change, OC accumulation, SDG 2 – Kein Hunger, SDG 15 – Leben an Land, SDG 2 - Zero Hunger, SDG 15 - Life on Land, LAND-USE, Food security, Radiocarbon, SUSTAINABLE INTENSIFICATION, SATURATION, 103037 Environmental physics, SDG 13 – Maßnahmen zum Klimaschutz, Land use, LUMINESCENCE, TURNOVER, STABILIZATION MECHANISMS, MATTER, 103037 Umweltphysik
DYNAMICS, Chronosequence, SEQUESTRATION, CAPACITY, SDG 13 - Climate Action, Climate change, OC accumulation, SDG 2 – Kein Hunger, SDG 15 – Leben an Land, SDG 2 - Zero Hunger, SDG 15 - Life on Land, LAND-USE, Food security, Radiocarbon, SUSTAINABLE INTENSIFICATION, SATURATION, 103037 Environmental physics, SDG 13 – Maßnahmen zum Klimaschutz, Land use, LUMINESCENCE, TURNOVER, STABILIZATION MECHANISMS, MATTER, 103037 Umweltphysik
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