首页> 外文期刊>Canadian Journal of Forest Research >Radiative forcing of forest biomass production and use under different thinning regimes and initial age structures of a Norway spruce forest landscape
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Radiative forcing of forest biomass production and use under different thinning regimes and initial age structures of a Norway spruce forest landscape

机译:不同稀释制度下森林生物质生产的辐射迫使使用挪威云杉林景观

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摘要

We studied how different thinning regimes and initial age structures of a Norway spruce (Picea abies (L.) Karst.) forest landscape affect the radiative forcing of forest biomass production and use. We considered the effects of forest carbon sequestration, substitution of materials and fossil fuels with forest biomass, and timber use efficiency. The initial age structures of our hypothetical forest landscapes in the middle boreal zone in Finland were young, middle-aged, and mature. Forest landscapes were thinned using either the current thinning recommendations (baseline) or maintaining 20% higher or 20% lower stocking over the 80-year study period. We employed forest ecosystem model simulations together with a life cycle assessment tool. The highest carbon sequestration was obtained by maintaining higher stocking in the landscapes. The initially middle-aged and mature age structures resulted in the strongest cooling of the climate in the first three decades of the simulation, but the highest cooling was found in the young age structure. However, radiative forcing was less sensitive to the thinning than to the substitution or timber use efficiency. Our results indicate that modeled climate impacts are affected by both initial age structure and forest management, which should be considered when generalizing the climate change mitigation potential of forests and forestry.
机译:我们研究了挪威云杉的不同稀释制度和初始年龄结构(Picea Andea(L.)喀斯特。)森林景观影响森林生物量生产和使用的辐射强制。我们考虑了森林碳封存,替代材料和化石燃料的影响,与森林生物量,木材使用效率。芬兰中部北方地区的假设森林景观的初始年龄结构是年轻,中年和成熟。使用当前的减薄建议(基线)或在80年的研究期间维持20%或较低的放量,使用当前的稀疏建议(基线)进行融化。我们与生命周期评估工具一起使用森林生态系统模型模拟。通过在景观中保持更高的储量来获得最高的碳螯合。最初中年和成熟的年龄结构导致气候最强的仿真中的气候变化,但在幼年结构中发现了最高的冷却。然而,辐射强制对稀疏敏感而不是取代或木材使用效率。我们的结果表明,初始时代结构和森林管理的模型气候影响受到初始时代结构和森林管理的影响,这在概括森林和林业的气候变化缓解潜力时应考虑。

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