Carbon dioxide and methane gas exchange following sphagnum moss harvesting in boreal peatland.

J Environ Manage

Geological Survey of Finland (GTK), Vuorimiehentie 5, 02151 Espoo, Finland; University of Eastern Finland (UEF), Tulliportinkatu 1, 80130 Joensuu, Finland.

Published: November 2024

AI Article Synopsis

  • * The study observed that wet strip-harvested sites showed better Sphagnum regeneration compared to dry clear-harvested sites, indicating variability in how harvesting methods affect regrowth over several years.
  • * Greenhouse gas emissions were significantly influenced by moisture levels, with younger drier sites being CO2 sources, while older drier and wetter sites eventually acted as CO2 sinks as vegetation began to recover and establish.

Article Abstract

Understanding the impacts of Sphagnum moss harvesting on peatland carbon (C) balance is crucial due to its potential rise as an anthropogenic land use. We studied eight nutrient-poor peatlands in Finland, harvested between 2015 and 2021, focusing on net ecosystem exchange of CO (NEE) and methane (CH) emissions. The greenhouse gas fluxes were measured to evaluate the sustainability of harvesting practices. Results showed significant variability in Sphagnum regeneration, with wet strip-harvested sites achieving 2-28% re-establishment in 2-8 years, while drier clear-harvested sites saw minimal spontaneous regeneration in 1-6 years. In addition to vegetation succession, GHG emissions were moisture dependent. In wet sites CH emissions increased along with time since harvesting and Eriophorum vaginatum (L.) cover, while dry sites exhibited overall lower CH fluxes. Younger (1-2 years post-harvest), dry sites were significant CO sources due to low photosynthetic activity. Older dry site with sparse ericoid shrub vegetation acted as CO sink. Wet sites initially had lower CO sink capacity, but this increased as E. vaginatum spread, and reached a plateau when Sphagnum mosses emerged, highlighting the importance of suitable water table levels for efficient CO sequestration.

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Source
http://dx.doi.org/10.1016/j.jenvman.2024.123357DOI Listing

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