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Early and repeated nutrient additions support far greater stemwood production in Norway spruce than traditional late-rotation fertilisation
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology. (Skog och trä, Forestry and Wood)ORCID iD: 0000-0003-1945-5198
Linnaeus University, Faculty of Technology, Department of Forestry and Wood Technology. (Skog och trä, Forestry and Wood)ORCID iD: 0000-0002-3742-9762
Swedish University of Agricultural Sciences, Sweden.ORCID iD: 0000-0002-1225-1128
Swedish University of Agricultural Sciences, Sweden.ORCID iD: 0000-0002-7624-4031
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2023 (English)In: Forest Ecology and Management, ISSN 0378-1127, E-ISSN 1872-7042, Vol. 549, article id 121425Article 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
Abstract [en]

Silvicultural techniques aimed at promoting forest biomass production can help meet the growing demand for renewable materials and mitigate climate change. One-time nitrogen (N) addition late in the rotation is a well-established method to stimulate growth in coniferous forests in northern Europe, but the potential gains from earlier and repeated fertiliser application remain uncertain. Here, we tested the impact of repeated fertilisation in juvenile Norway spruce stands across 9 sites covering a wide range of growing conditions over a 700 km stretch from central to southern Sweden. We tested the fertilisation effects using two separate studies: i) an interval trial with a fertilisation frequency of one (F1), two (F2), or three years (F3) performed at plot-level across five sites (2002–2014), and ii) a practice-oriented trial with a two-year fertilisation interval (F2) applied at stand-level and replicated at four sites (2003–2013). The composition of the nutrient mix in each plot was optimised based on foliar nutrient analyses. In the interval trial, all three fertilisation schedules strongly increased periodic annual increment (PAI) (F1: 105 %, F2: 93 %, F3: 79 %) relative to the unfertilised control, resulting in more than a doubling of stem volume yield in the F1 and F2 treatments (120 % and 110 %, respectively) and a significantly smaller but still sizeable yield stimulation of 82 % in the F3 treatment. Nitrogen use efficiency (NUE, stemwood volume increase per unit mass of N added) was similar among fertilisation intervals (on average 130 m3 ha−1 1000 kg N−1), indicating that the extra N provided through yearly fertilisation (F1) is redundant given the similar stemwood yields in the F2 treatment. In the practice-oriented trial, the sole F2 treatment increased PAI by 95 % over the control, translating into a yield stimulation of 114 % and an almost identical NUE to that of the interval trial. NUE greatly exceeded the figures typically observed with traditional late-rotation fertilisation and correlated inversely with baseline site productivity (using site index as a proxy) in the F1 and F2 treatments (the latter pooled across the two trials). Our results clearly indicate that nutrient limitation restricts growth and carbon (C) capture in young Norway spruce plantations in northern Europe to less than half of their potential, highlighting repeated fertilisation at nutrient-poor sites as an effective management tool to support a growing bioeconomy and enhance C sequestration.

Place, publisher, year, edition, pages
Elsevier, 2023. Vol. 549, article id 121425
Keywords [en]
Nutrient-limitation, Forest fertilisation, Picea abies, Operational forestry, Stem biomass yield, Carbon sequestration
National Category
Forest Science
Research subject
Technology (byts ev till Engineering), Forestry and Wood Technology
Identifiers
URN: urn:nbn:se:lnu:diva-125244DOI: 10.1016/j.foreco.2023.121425ISI: 001098435700001Scopus ID: 2-s2.0-85174492605OAI: oai:DiVA.org:lnu-125244DiVA, id: diva2:1806396
Available from: 2023-10-20 Created: 2023-10-20 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.Bergh, Johan

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