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首页> 外文期刊>Silva Fennica >Assessing the integrated climatic impacts of forestry and wood products.
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Assessing the integrated climatic impacts of forestry and wood products.

机译:评估林业和木制品的综合气候影响。

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摘要

Managed forests serve as a store of carbon (C) and a renewable source of energy and materials. By using forest products as substitutes for fossil fuels or non-renewable materials, emissions from fossil C sources can be displaced. The efficiency of emissions displacement depends on the product, its lifecycle and the fossil-fuel based reference system that is substituted. Forest management practices have an impact on C stocks in biomass and on the annual supply of products and their mix. There are trade-offs between sequestering C stocks in forests and the climatic benefits obtained by sustainable forest harvesting and using wood products to displace fossil C emissions. This article presents an integrated, steady-state analysis comparing various equilibrium states of managed forests and wood product pools that represent sustainable long-term forestry and wood-use strategies. Two climatic indicators are used: the combined C stock in forests and wood products and the fossil C emissions displaced annually by harvested wood products. The study indicates that long-term strategies could be available that are better according to both indicators than forestry practices based on the existing silvicultural guidelines in Finland. These strategies would involve increasing the basal area and prolonging rotations to produce more sawlogs. Further, the climate benefits appear to be highest in case the sawlog supply is directed to production of long-lived materials substituting for fossil-emission and energy intensive materials and recycled after their useful life to bioenergy.
机译:人工林可作为碳(C)和可再生能源与材料的储存地。通过使用森林产品替代化石燃料或不可再生材料,可替代化石碳源的排放。排放置换的效率取决于产品,其生命周期以及所替代的基于化石燃料的参考系统。森林管理实践对生物量中的碳储量以及产品及其混合物的年度供应有影响。在森林中固存的碳库与通过可持续森林采伐以及使用木制品代替化石碳排放所获得的气候效益之间需要权衡取舍。本文提供了一种综合的稳态分析,比较了被管理森林和木材产品池的各种平衡状态,代表了可持续的长期林业和木材使用策略。使用了两个气候指标:森林和木制品中的总碳储量,以及每年被伐木产品替代的化石碳排放量。该研究表明,根据芬兰现有的造林指导方针,根据这两个指标,可以采用比林业实践更好的长期策略。这些策略将涉及增加基面积和延长旋转以产生更多的锯木。此外,如果锯木供应直接用于生产长寿命材料替代化石排放和高能耗材料,并在其使用寿命后转化为生物能源,那么气候效益似乎是最高的。

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