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Effects of climate change and management on net climate impacts of production and utilization of energy biomass in Norway spruce with stable age-class distribution

机译:气候变化和管理对挪威云杉生产和使用能源云的净气候影响的影响,年龄分布稳定

摘要

We studied the effects of climate change and forest management scenarios on net climate impacts (radiative forcing) of production and utilization of energy biomass, in a Norway spruce forest area over an 80-year simulation period in Finnish boreal conditions. A stable age-class distribution was used in model-based analyses to identify purely the management effects under the current and changing climate (SRES B1 and A2 scenarios). The radiative forcing was calculated based on an integrated use of forest ecosystem model simulations and a life cycle assessment (LCA) tool. In this work, forest-based energy was used to substitute coal, and current forest management (baseline management) was used as a reference management. In alternative management scenarios, the stocking was maintained 20% higher in thinning compared to the baseline management, and nitrogen fertilization was applied. Intensity of energy biomass harvest (e.g. logging residues, coarse roots and stumps) was varied in the final felling of the stands at the age of 80years. Also, the economic profitability (NPV, 3% interest rate) of integrated production of timber and energy biomass was calculated for each management scenario. Our results showed that compared to the baseline management, climate benefits could be increased by maintaining higher stocking in thinning over rotation, using nitrogen fertilization and harvesting logging residues, stumps and coarse roots in the final felling. Under the gradually changing climate (in both SRES B1 and A2), the climate benefits were lower compared to the current climate. Trade-offs between NPV and net climate impacts also existed.
机译:我们研究了挪威云杉林地区在长达80年的模拟期内,在芬兰北方条件下,气候变化和森林经营情景对能源生物质生产和利用的净气候影响(辐射强迫)的影响。在基于模型的分析中使用了稳定的年龄类别分布,以仅识别当前和不断变化的气候(SRES B1和A2方案)下的管理效果。辐射强迫是根据森林生态系统模型模拟和生命周期评估(LCA)工具的综合使用计算得出的。在这项工作中,基于森林的能源被用来替代煤炭,而当前的森林管理(基准管理)被用作参考管理。在替代管理方案中,与基线管理相比,放养的稀疏度保持高20%,并应用了氮肥。在80年的林分最后砍伐时,能源生物量收获的强度(例如伐木残渣,粗根和树桩)有所不同。此外,还针对每种管理方案计算了木材和能源生物质的综合生产的经济收益率(NPV,3%利率)。我们的结果表明,与基准管理相比,通过在轮作的间伐中保持较高的放养量,使用氮肥和在最终伐木中收获伐木残渣,树桩和粗根,可以增加气候效益。在逐渐变化的气候下(在SRES B1和A2中),与当前气候相比,气候效益要低一些。在净现值和净气候影响之间也存在取舍。

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