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Forest fertilization transiently increases soil CO2 efflux in young Norway spruce stands in Sweden
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology.ORCID iD: 0000-0001-6115-7624
Swedish University of Agricultural Sciences, Sweden.
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology. Linnaeus University, Linnaeus Knowledge Environments, Green Sustainable Development.ORCID iD: 0000-0002-3742-9762
Swedish University of Agricultural Sciences, Sweden.
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2025 (English)In: Agricultural and Forest Meteorology, ISSN 0168-1923, E-ISSN 1873-2240, Vol. 360, article id 110287Article in journal (Refereed) Published
Sustainable development
SDG 7: Ensure access to affordable, reliable, sustainable and modern energy for all, SDG 12: Ensure sustainable consumption and production patterns, SDG 13: Take urgent action to combat climate change and its impacts by regulating emissions and promoting developments in renewable energy, SDG 15: Protect, restore and promote sustainable use of terrestrial ecosystems, sustainably manage forests, combat desertification, and halt and reverse land degradation and halt biodiversity loss
Abstract [en]

Late-rotation fertilization of Norway spruce stands is a frequently used management tool in Fennoscandia to increase timber yields. Meanwhile, the growing demand for renewable resources has sparked great interest in earlier and repeated fertilizer application but it remains unclear how this affects carbon dioxide (CO2) fluxes in the understory, especially forest floor respiration (Rff). This study investigated the effects of forest fertilization on Rff and net forest floor exchange (NFFE) in young, nitrogen (N) limited Norway spruce stands in southern Sweden. In a short-term dose experiment, Rff and NFFE were recorded during 2016 after varying doses of N (0,150, 300, or 450 kg ha-1 of N, hereafter N0, N150, N300, N450) were added to circular, 3-m-diameter plots in April. In a second, long-term experiment, two stand-level fertilizer applications with 150 kg ha-1 of N on each occasion were performed in 2014 and 2016 and Rff was measured at semi-regular intervals from mid-2013 to the end of 2017. In the dose experiment, fertilization increased Rff by 23 %, 81 % and 55 % in the N150, N300 and N450 treatments, respectively. Under well-lit conditions, the N300 and N450 treatments significantly enhancedphotosynthetic CO2 uptake of the forest floor vegetation by 97 % and 66 %, respectively, while the N150 treatment had no significant effect. The results of the long-term experiment indicate an initial stimulation of Rff, but this effect was transient. Our findings imply that fertilization in young Norway spruce stands, using the N150 dose (the typical dose used in Swedish forestry), may cause a transient burst in Rff that is far outweighed bynutrient-driven increases in forest floor photosynthesis under favourable light conditions prior to canopy closure.

Place, publisher, year, edition, pages
Elsevier, 2025. Vol. 360, article id 110287
Keywords [en]
Nitrogen availability, Greenhouse gases, Soil respiration, Climate change mitigation, Forest management
National Category
Forest Science
Research subject
Technology (byts ev till Engineering), Forestry and Wood Technology; Technology (byts ev till Engineering), Civil engineering
Identifiers
URN: urn:nbn:se:lnu:diva-133493DOI: 10.1016/j.agrformet.2024.110287ISI: 001361827600001Scopus ID: 2-s2.0-85209354586OAI: oai:DiVA.org:lnu-133493DiVA, id: diva2:1914954
Available from: 2024-11-20 Created: 2024-11-20 Last updated: 2026-04-16Bibliographically approved

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Bader, Martin K.-F.Axelsson, MagnusBergh, Johan

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Håkansson, CharlottaBader, Martin K.-F.Axelsson, MagnusBergh, Johan
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CiteExportLink to record
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Citation style
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