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Research article2024Peer reviewedOpen access

Diminishing legacy effects from forest fertilization on stand structure, vegetation community, and soil function

Larsson, Marcus; Strengbom, Joachim; Gundale, Michael J.; Nordin, Annika

Abstract

While there is consensus that fertilization with nitrogen (N) is a cost-effective way of increasing both forest biomass yield and timber harvest profitability, the strength and longevity of legacy effects are debated. To quantify legacy effects of past fertilization, we analysed 21 mixed Pinus sylvesteris and Picea abies stands. The stands, on average 23 years old at the time of this study, were either unfertilized (n=7), fertilized with 150 kg N ha-1 once 36 years ago (n=7), or twice, 45 and 36 years ago, respectively (n=7), during the previous stand rotation. We performed measurements on soil N mineralisation and N availability, forest growth, ground vegetation community composition, soil and vegetation C/N ratios and soil C and N stocks, many of which responded to legacy N fertilization earlier in stand development. Our results show that the legacy effects of fertilization during the previous stand rotation have diminished through time, indicating an eventual convergence of stand properties. Specifically, all significant effects present in the previous measurement period (over a decade ago), were weaker or completely absent in the current study (i.e. 36 years after fertilization and 23 years after initiation of the new stands). None-the-less, this indicates a longer legacy effect of N fertilization than what is normally considered and suggests that care should be taken to mitigate unwanted, long-term effects when utilizing N addition to promote tree growth in boreal forests.

Keywords

Forest fertilization; Forest growth; Vegetation community composition; Mineralization; Soil organic carbon; Ion-exchange resin

Published in

Forest Ecology and Management
2024, volume: 563, article number: 121967
Publisher: ELSEVIER

SLU Authors

UKÄ Subject classification

Forest Science
Soil Science

Publication identifier

  • DOI: https://doi.org/10.1016/j.foreco.2024.121967

Permanent link to this page (URI)

https://res.slu.se/id/publ/140408