Permafrost landslides promote soil CO2 emission and hinder C accumulation
Creators
- 1. Sukachev Institute of Forest SB RAS, Federal Research Center «Krasnoyarsk Science Center SB RAS», 50/28 Akademgorodok, 660036 Krasnoyarsk (Russian Federation)
- 2. Siberian Federal University, 79 Svobodny pr., 660041 Krasnoyarsk (Russian Federation)
- 3. Institute of Earth and Environmental Sciences, University of Potsdam, 14476 Potsdam (Germany)
- 4. GFZ German Research Centre for Geosciences, Section Geomicrobiology, Telegrafenberg C-425, 14473 Potsdam (Germany)
Description
Highlights: • Landslides cause high variation of soil CO2 fluxes in permafrost areas of Siberia. • Soil CO2 fluxes tend to be higher at sites disturbed by landslides compared with intact larch stands. • Landslides in the permafrost zone hinder soil carbon accumulation for long periods. • Landslides radically transform larch communities on south-facing slopes of northern rivers. -- Abstract: Landslides are common in high-latitude forest ecosystems that have developed on permafrost. The most vulnerable areas in the permafrost territories of Siberia occur on the south-facing slopes of northern rivers, where they are observed on about 20% of the total area of river slopes. Landslide disturbances will likely increase with climate change especially due to increasing summer–autumn precipitation. These processes are the most destructive natural disturbance agent and lead to the complete removal of pre-slide forest ecosystems (vegetation cover and soil). To evaluate postsliding ecosystem succession, we undertook integrated ecological research at landslides of different age classes along the Nizhnyaya Tunguska River and the Kochechum River (Tura, Krasnoyarsk region, Russia). Just after the event (at the one-year-old site), we registered a drop in soil respiration, a threefold lower microbial respiration rate, and a fourfold smaller mineral soil carbon and nitrogen stock at bare soil (melkozem) plots at the middle location of the site as compared with the non-affected control site. The recovery of disturbed areas began with the re-establishment of plant cover and the following accumulation of an organic soil layer. During the 35-year succession (L1972), the accumulated layer (O-layer) at the oldest site contained similar C- and N stocks to those found at the control sites. However, the mineral soil C- and N stocks and the microbial biomass – even of the oldest landslide area – did not reach the value of these parameters in control plots. Later, the soil respiration level and the eco-physiological status of soil microbiota also recovered due to these changes. This study demonstrates that the recovery after landslides in permafrost forests takes several decades. In addition, the degradation of permafrost due to landslides clearly hinders the accumulation of soil organic matter in the mineral soil.
Additional details
Additional titles
- Augmented title (English)
- Landslides;Soil microorganisms;Permafrost;Soil C- and N stocks;Boreal ecosystems;Soil respiration
Identifiers
- DOI
- 10.1016/j.scitotenv.2018.11.468;
- PII
- S004896971834823X;
Publishing Information
- Journal Title
- Science of the Total Environment
- Journal Volume
- 657
- Journal Page Range
- p. 351-364
- ISSN
- 0048-9697
- CODEN
- STENDL
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 55103589
- Subject category
- S54: ENVIRONMENTAL SCIENCES; S09: BIOMASS FUELS;
- Descriptors DEI
- CARBON; CARBON DIOXIDE; CLIMATIC CHANGE; CONTROL; DISTURBANCES; ECOSYSTEMS; FORESTS; LANDSLIDES; MICROORGANISMS; NITROGEN; ORGANIC MATTER; PERMAFROST; RESPIRATION; RIVERS; SIBERIA; SOILS
- Descriptors DEC
- ASIA; CARBON COMPOUNDS; CARBON OXIDES; CHALCOGENIDES; EASTERN EUROPE; ELEMENTS; EUROPE; MATTER; NONMETALS; OXIDES; OXYGEN COMPOUNDS; RUSSIAN FEDERATION; SURFACE WATERS
Optional Information
- Copyright
- Copyright (c) 2018 Elsevier B.V. All rights reserved.