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Norway spruce productivity in southern Sweden is equally limited by nitrogen and phosphorous
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology.ORCID iD: 0000-0003-1945-5198
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology.ORCID iD: 0000-0002-3742-9762
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology.ORCID iD: 0000-0001-6853-6897
Linnaeus University, Faculty of Health and Life Sciences, Department of Biology and Environmental Science.
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2024 (English)In: Forest Ecology and Management, ISSN 0378-1127, E-ISSN 1872-7042, Vol. 572, article id 122192Article in journal (Refereed) Published
Sustainable development
SDG 13: Take urgent action to combat climate change and its impacts by regulating emissions and promoting developments in renewable energy, SDG 12: Ensure sustainable consumption and production patterns
Abstract [en]

Nutrient limitation of forest growth, especially nitrogen (N) deficiency, is widespread in the boreal region. N fertilisation has thus become a common silvicultural practice in Fennoscandian Norway spruce stands, but to what extent phosphorus (P) is co-limiting productivity and how initial basal area affects the growth response to N addition remains unresolved. To address these questions, two experiments were established in mid-rotation Norway spruce stands in southern Sweden where decades of high atmospheric N deposition have reduced the severity of N-limitation. In a P experiment initiated in 2011, we tested P addition alone (two applications of 200 kg P ha−1) and in a second study also starting in 2011 (NP experiment), a single dose of N was administered alone (200 kg ha−1 in thinned and unthinned stands, hereafter called N and N-unthinned treatments) and in combination with P (N+P = one-time 200 kg N ha−1, two applications of 200 kg P ha−1 in thinned stands). P addition alone increased PAI (periodic annual increment) significantly by 21 % during the first, moister assessment period up to 2014 and by 18 % in the drier 2015–2019 period, resulting in a 10 % increase in final stem volume yield. In the NP experiment, significant PAI increases under favourable meteorological conditions up to 2014 occurred in all fertilisation treatments. The strongest effects were seen in the N-unthinned treatment while no significant additive effect resulted from the joint addition of N and P (N: +20 %, N-unthinned: +38 %, N+P: +23 %). In the drier 2015–2019 period, only the N+P treatment caused significantly greater PAI (+29 %). Final stem volume yield in the NP experiment significantly increased by 10 %, 39 % and 16 % in the N, N-unthinned and N+P plots, respectively. In both experiments, foliar P and thus P/N rose drastically in response to P addition alone or in combination with N. Minor increases in leaf area index (LAI) only occurred in P-containing treatments. Our findings indicate that Norway spruce productivity in southern Sweden is constrained to a similar extent by both N and P. Sustainable nutrient management in Norway spruce growing regions with high N loading (like southern Sweden) should prioritise P over N supply.

Place, publisher, year, edition, pages
Elsevier, 2024. Vol. 572, article id 122192
Keywords [en]
Forest fertilisation, Plant nutrition, Picea abies, Anthropogenic deposition, Nutrient limitation
National Category
Forest Science
Research subject
Technology (byts ev till Engineering), Forestry and Wood Technology
Identifiers
URN: urn:nbn:se:lnu:diva-132508DOI: 10.1016/j.foreco.2024.122192ISI: 001315256500001Scopus ID: 2-s2.0-85203629983OAI: oai:DiVA.org:lnu-132508DiVA, id: diva2:1897416
Available from: 2024-09-13 Created: 2024-09-13 Last updated: 2025-02-04Bibliographically approved
In thesis
1. The impact of nutrient enrichment on tree growth in boreal and cold-temperate Norway spruce and oak stands
Open this publication in new window or tab >>The impact of nutrient enrichment on tree growth in boreal and cold-temperate Norway spruce and oak stands
2024 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

The necessity for climate change mitigation and the growing demand for renewable materials calls for silvicultural approaches that increase forest biomass production. In northern conifer forests growth is normally limited by nutrients, primarily nitrogen (N). Potential advantages of early and repeated fertiliser applications needs to be studied and compared with traditional late-rotation fertilisation.  Fertilisation influences earlywood proportion and wood density, but responses are variable. The role of phosphorus (P) in areas with high N deposition remains unclear. Moreover, the growth potential of fertilised oak remains underexplored. 

This thesis investigates the effects of nutrient optimisation on Norway spruce and oak growth, as well as its influence on earlywood proportion and basic wood density in spruce stem wood. Also, growth effects of P, N, and NP fertilisation were studied in mid-rotation Norway spruce stands.

Paper I examines the impact of repeated fertilisation at nine young Norway spruce stands comprising an interval study with different fertilisation frequencies across five sites, and a practice-oriented study with two-year fertilisation interval at four sites. All fertilisation treatments significantly increased periodic annual increment (PAI) by 79-105 % over the control. 

Paper II studied the influence of fertilisation on the proportion of earlywood and wood density using X-ray densitometry. Fertilisation caused a reduction in wood density and increases in earlywood proportion. 

Paper III evaluated the effects of fertilisation, irrigation and their combination on pedunculate and sessile oak (Quercus robur L., Q. petraea (Matt.) Liebl.) on abandoned farmland. None of the treatments resulted in a significant growth stimulation indicating that, under the current precipitation regime, the soil nutrient legacies from former agricultural use are sufficient to leverage the maximum growth potential.

Paper IV examined the effects of P, N, and NP fertilisation in two experiments in mid-rotation Norway spruce stands in an area with elevated N deposition. The pure P treatment increased PAI by 21% in assessment period 1 and 18% in period 2. In the NP experiment, all treatments increased PAI in period 1 (N: +20%, N+P: +23%), but in period 2 only the N+P treatment showed a significant 29% increase.

Place, publisher, year, edition, pages
Växjö: Linnaeus University Press, 2024. p. 82
Series
Linnaeus University Dissertations ; 547
Keywords
Nutrient limitation, Operational forestry, Basic wood density, Picea abies, Quercus robur, Quercus petraea
National Category
Forest Science
Research subject
Technology (byts ev till Engineering), Forestry and Wood Technology
Identifiers
urn:nbn:se:lnu:diva-133157 (URN)10.15626/LUD.547.2024 (DOI)9789180822152 (ISBN)9789180822169 (ISBN)
Public defence
2024-11-19, N1017, Georg Lückligs väg 3, Växjö, 10:00 (Swedish)
Opponent
Supervisors
Available from: 2024-10-29 Created: 2024-10-29 Last updated: 2024-11-07Bibliographically approved

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Svensson, CarlBader, Martin K.-F.Fransson, Ann-MariAlriksson, Claes-GöranBergh, Johan

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Svensson, CarlBader, Martin K.-F.Fransson, Ann-MariAlriksson, Claes-GöranGoude, MartinBergh, Johan
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Department of Forestry and Wood TechnologyDepartment of Biology and Environmental ScienceGreen Sustainable Development
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