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Life cycle assessment of eucalyptus short rotation coppices for bioenergy production in southern France

机译:南方法国生物能源生产桉树短旋转泛酸的生命周期评估

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Short rotation coppices (SRC) are considered prime candidates for biomass production, yielding good-quality feedstock that is easy to harvest. Besides technical, social and economical aspects, environmental issues are important to be taken into account when developing SRC. Here, we evaluated the environmental impacts of delivering 1 GJ of heat from eucalyptus SRC using life cycle assessment (LCA), based on management scenarios involving different rotations lengths, fertilizer input rates, stem densities and harvest methods. Compared to equivalent fossil chains, all eucalyptus scenarios achieved savings of fossil energy and greenhouse gas (GHG) emissions in the 80–90% range, and had generally lower impacts, except for eutrophication. The 3 year rotation scenario was the most energy and GHG-intensive, whereas manual felling for the longer rotations resulted in twofold larger photochemical ozone impacts compared to the other scenarios. Transportation of wood chips and fertilization were the top two contributors to the impacts, the latter being more important with the shorter rotation lengths due to the evergreen character of eucalyptus. The possibility of including ecosystem carbon dynamics was also investigated, by translating the temporary sequestration of atmospheric COSUB2/SUB in the above and belowground biomass of eucalyptus as COSUB2/SUB savings using various published equivalence factors. This offset the life cycle GHG emissions of heat provision from eucalyptus SRC by 70–400%.
机译:短旋转Coppices(SRC)被认为是生物质生产的主要候选,产生易收获的优质原料。除技术,社会和经济方面外,在制定SRC时,环境问题很重要。在这里,我们根据涉及不同转动长度,肥料输入速率,茎密度和收获方法,使用生命周期评估(LCA)评估从桉树SRC提供1 GJ热量的环境影响。与等同化石链相比,所有桉树情景都在80-90%的范围内实现了化石能量和温室气体(GHG)排放,并且除富营养化外,均均匀较低。 3年旋转方案是最多的能源和温室气体密集型,而较长旋转的手动导致双重的光化学臭氧影响与其他情况相比。木屑的运输和施肥是影响的两大贡献者,后者由于桉树的常绿特征,旋转长度越短。还通过将临时隔离在上述和下面的桉树的地下生物质中的临时封存作为CO 2 使用各种公开的等价物的节省来研究包括生态系统碳动力学的可能性因素。这抵消了从Eucalyptus SRC的热量提供的生命周期GHG排放量为70-400%。

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