Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Prompt active restoration of peatlands substantially reduces climate impact
Restoration of peatlands after peat extraction could be a benefit to the climate system. However a multi-year ecosystem-scale assessment of net carbon (C) sequestration is needed. We investigate the climate impact of active peatland restoration (rewetting and revegetating) using a chronosequence of C gas exchange measurements across post-extraction Canadian peatlands. An atmospheric perturbation model computed the instantaneous change in radiative forcing of CO _2 and CH _4 emissions/uptake over 500 years. We found that using emission factors specific to an active restoration technique resulted in a radiative forcing reduction of 89% within 20 years compared to IPCC Tier 1 emission factors based on a wide range of rewetting activities. Immediate active restoration achieved a neutral climate impact (excluding C losses in the removed peat) about 155 years earlier than did a 20 year delay in restoration. A management plan that includes prompt active restoration is key to utilizing peatland restoration as a climate change mitigation strategy.
Prompt active restoration of peatlands substantially reduces climate impact
Restoration of peatlands after peat extraction could be a benefit to the climate system. However a multi-year ecosystem-scale assessment of net carbon (C) sequestration is needed. We investigate the climate impact of active peatland restoration (rewetting and revegetating) using a chronosequence of C gas exchange measurements across post-extraction Canadian peatlands. An atmospheric perturbation model computed the instantaneous change in radiative forcing of CO _2 and CH _4 emissions/uptake over 500 years. We found that using emission factors specific to an active restoration technique resulted in a radiative forcing reduction of 89% within 20 years compared to IPCC Tier 1 emission factors based on a wide range of rewetting activities. Immediate active restoration achieved a neutral climate impact (excluding C losses in the removed peat) about 155 years earlier than did a 20 year delay in restoration. A management plan that includes prompt active restoration is key to utilizing peatland restoration as a climate change mitigation strategy.
Prompt active restoration of peatlands substantially reduces climate impact
Kelly A Nugent (Autor:in) / Ian B Strachan (Autor:in) / Nigel T Roulet (Autor:in) / Maria Strack (Autor:in) / Steve Frolking (Autor:in) / Manuel Helbig (Autor:in)
2019
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Metadata by DOAJ is licensed under CC BY-SA 1.0
Restoration of blanket peatlands
Online Contents | 2014
|New approaches to the restoration of shallow marginal peatlands
Online Contents | 2015
|Biochar-composting substantially reduces methane and air pollutant emissions from dairy manure
DOAJ | 2024
|Challenges and opportunities for restoration of high-elevation Andean peatlands in Ecuador
Online Contents | 2022
|