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Understanding the timing and variation of greenhouse gas emissions of forest bioenergy systems

机译:了解森林生物能源系统温室气体排放的时间和变化

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Forest-based bioenergy plays an important role in climate mitigation for limiting global mean temperature increase to below 2 degrees C. The greenhouse gas (GHG) impact of three forest-based bioenergy systems from the USA, Canada and Spain supplying wood pellets for electricity in the UK were evaluated by conducting lifecycle assessments and forest carbon modelling of the three forest systems. Cumulative emissions were analysed by calculating the forest carbon stock change and net GHG emissions balance of the forest-based bioenergy electricity. The analysis considered both the replacement of the existing electricity mix with bioenergy electricity and forest management with and without bioenergy use. The supply chain emissions and forest carbon balances indicated that GHG emission reductions are possible. However, the cumulative net GHG balance at forest landscape scale revealed that the reduction potential is limited, potentially with no GHG reductions in fast growing forests with shorter rotations, while slow growing forest systems with longer rotations result in greater GHG reductions. This means that the maximum climate benefit is delivered at a different point in time for different forest systems. To evaluate the climate change mitigation potential of forest-based bioenergy it is therefore necessary to consider the management, utilisation and relevant counterfactual of the whole forest and its products. In terms of climate change mitigation potential and minimising possible negative impacts that would require multi-level governance.
机译:森林生物能源在缓解气候变化方面发挥着重要作用,可将全球平均温度限制在2摄氏度以下。来自美国,加拿大和西班牙的三种森林生物能源系统的温室气体(GHG)影响为美国提供木屑颗粒。通过对这三个森林系统进行生命周期评估和森林碳建模,对英国进行了评估。通过计算森林生物能源电力的森林碳储量变化和净GHG排放平衡来分析累积排放量。该分析考虑了用生物能源电力替代现有电力组合以及使用和不使用生物能源的森林管理。供应链排放和森林碳平衡表明,减少温室气体排放是可能的。但是,在森林景观规模上累积的净温室气体平衡表明减少潜力是有限的,在轮作时间较短的速生林中,如果没有减少温室气体的排放量,而轮作时间较长的慢速生长林系统的温室气体减少量更大。这意味着针对不同的森林系统,在不同的时间点可获得最大的气候效益。因此,要评估森林生物能源的缓解气候变化的潜力,有必要考虑整个森林及其产品的管理,利用和相关事实。就缓解气候变化的潜力和最大程度地减少可能需要进行多级治理的负面影响而言。

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