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Bridging mapping and simulation modelling in the ecosystem service assessments of boreal forests:effects of bioenergy production on carbon dynamics

机译:北方森林生态系统服务评估中的桥接映射和仿真建模:生物能源生产对碳动力学的影响

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Background:Increasing the use of forest harvest residues for bioenergy production reduces greenhouse emissions from the use of fossil fuels.However,it may also reduce carbon stocks and habitats for deadwood dependent species.Consequently,simple tools for assessing the trade-offs of alternative management practices on forest dynamics and their services to people are needed.The objectives of this study were to combine mapping and simulation modelling to investigate the effects of forest management on ecosystem services related to carbon cycle in the case of bioenergy production;and to evaluate the suitability of this approach for assessing ecosystem services at the landscape level.Stand level simulations of forest growth and carbon budget were combined with extensive multi-source forest inventory data across a southern boreal landscape in Finland.Stochastic changes in the stand age class distribution over the study region were simulated to mimic variation in management regimes.Results:The mapping framework produced reasonable estimates of the effects of forest management on a set of key ecosystem service indicators:the annual carbon stocks and fluxes of forest biomass and soil,timber and energy-wood production and the coarse woody litter production over a simulation period 2012–2100.Regular harvesting,affecting the stand age class distribution,was a key driver of the carbon stock changes at a landscape level.Extracting forest harvest residues in the final felling caused carbon loss from litter and soil,particularly with combined aboveground residue and stump harvesting.It also reduced the annual coarse woody litter production,demonstrating negative impacts on deadwood abundance and,consequently,forest biodiversity.Conclusions:The refined mapping framework was suitable for assessing ecosystem services at the landscape level.The procedure contributes to bridging the gap between ecosystem service mapping and detailed simulation modelling in boreal forests.It allows for visualizing ecosystem services as fine resolution maps to support sustainable land use planning.In the future,more detailed models and a wider variety of ecosystem service indicators could be added to develop the method.

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  • 来源
    《中国林学(英文版)》 |2021年第1期|35-49|共15页
  • 作者单位

    Finnish Environment Institute SYKE Biodiversity Centre Latokartanonkaari 11 FI-00790 Helsinki Finland;

    University of Helsinki Department of Geosciences and Geography P.O. Box 64 FI-00014 Helsinki Finland;

    Natural Resources Institute Finland (Luke) P.O. Box 2 FI-00791 Helsinki Finland;

    VTT Technical Research Centre of Finland LTD P.O. Box 1000 FI-02044 VTT Espoo Finland;

    Finnish Meteorological Institute Climate System Research Unit P.O. Box 503 FI-00101 Helsinki Finland;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 04:56:35
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