RECORD

Restoration Thinning in a Drought-Prone Idaho Forest Creates a Persistent Carbon Deficit

Title:
Restoration Thinning in a Drought-Prone Idaho Forest Creates a Persistent Carbon Deficit
Creator:
Stenzel, J. E.; Berardi, D. M.; Walsh, E. S.; Hudiburg, T. W.
Date Created:
2021-02-05
Description:
Western US forests represent a carbon sink that contributes to meeting regional and global greenhouse gas targets. Forest thinning is being implemented as a strategy for reducing forest vulnerability to disturbance, including mortality from fire, insects, and drought, as well as protecting human communities. However, the terrestrial carbon balance impacts of thinning remain uncertain across regions, spatiotemporal scales, and treatment types. Continuous and in situ long‐term measurements of partial harvest impacts to stand‐scale carbon and water cycle dynamics are nonetheless rare. Here, we examine post‐thinning carbon and water flux impacts in a young ponderosa pine forest in Northern Idaho. We examine in situ stock and flux impacts during the 3 years after treatment as well as simulate the forest sector carbon balance through 2050, including on and off‐site net emissions. During the observation period, increases in tree‐scale net primary production (NPP) and water use persistence through summer drought did not overcome the impacts of density reduction, leading to 45% annual reductions of NPP. Growth duration remained constrained by summer drought in control and thinned stands. Ecosystem model and life cycle assessment estimates demonstrated a net forest sector carbon deficit relative to control stands of 27.0 Mg C ha−1 in 2050 due to emissions from dead biomass pools despite increases to net ecosystem production. Our results demonstrate dynamics resulting in carbon losses from forest thinning, providing a baseline with which to inform landscape‐scale modeling and assess tradeoffs between harvest losses and potential gains from management practices. Key Points Thinning in a ponderosa pine forest resulted in significant increases to annual tree growth and water uptake into the drought period At the stand level, density reductions reduced net primary production by 40%–50% within the 3‐years observation period Emissions from killed biomass resulted in a modeled terrestrial carbon deficit of ∼27 Mg C ha−1 relative to control stands through 2050
Document Type:
Research Article
Subjects:
UIEF carbon sinks restoration thinning atmospheric carbon dioxide net primary production NPP terrestrial carbon balance harvest impacts logging impacts life cycle assessment biomass biomass emissions forest operations
Location:
UIEF
Latitude:
46.869607
Longitude:
-116.733856
Publisher:
JGR Biogeosciences
Department:
Forest, Rangeland, and Fire Sciences
Type:
Text

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Preferred Citation:
"Restoration Thinning in a Drought-Prone Idaho Forest Creates a Persistent Carbon Deficit", UIEF Research Exchange, University of Idaho Library Digital Collections, https://www.lib.uidaho.edu/digital/uief/items/uief_0145.html
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