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首页> 外文期刊>The International Journal of Life Cycle Assessment >Accounting for biodiversity in life cycle impact assessments of forestry and agricultural systems-the Biolmpact metric
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Accounting for biodiversity in life cycle impact assessments of forestry and agricultural systems-the Biolmpact metric

机译:林业和农业系统生命周期影响评估中的生物多样性核算-生物影响指标

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Purpose Life cycle assessment (LCA) is a useful method for assessing environmental impacts at large scales. Biodiversity and ecosystem diversity are site-specific, often complex, and difficult to generalise within an LCA framework. There is currently no globally acceptable means of assessing biodiversity within the LCA framework. We introduce, test and revise BioImpact, a method for incorporating biodiversity into an LCA framework, on four production systems (native forestry, plantation softwood timber production, cropping and rangeland grazing) in Australia.Methods Our proposed method, a metric we call BioImpact, incorporates biodiversity and ecological impacts through a series of semi-quantitative questions, published data and expert opinion which aim to encapsulate the main issues relating to biodiversity within a disturbance impact framework appropriate to LCA. Results are scaled to a single biodiversity measure that can be incorporated into LCA. We test and revise BioImpact scores on four production systems (native forestry, plantation softwood timber production, cropping and rangeland grazing) in comparison to species richness and net primary productivity (NPP) for these production systems. We demonstrate how the scores can be incorporated into LCA using SimaPro as a platform.Results and discussion For pine plantation, cropping/pastures and rangeland grazing, BioImpact demonstrated greater impact, which represents biodiversity loss for multiple species groups. Native forestry scored significantly lower impact than that of other land uses. As a comparison, all production processes scored highly for species richness of main multiple species groups (vascular plants, invertebrates, birds) and were not different in terms of NPP. Integration of BioImpact into LCA found that the softwood system, despite having a higher biodiversity impact per ha year, had a marginally lower BioImpact score per cubic metre compared to native forestry. This was possibly due to cumulative effects and consideration of the reference benchmark, e.g., low levels of pre-harvest biodiversity when not established on native forests; fewer threatened species (and lesser impact) compared to native forestry; questions not weighted sufficiently; and the difference between establishment on either agricultural cleared land or native forest area. Improvement in scaling and/or weighting within the BioImpact scores within each question is discussed.Conclusions BioImpact encapsulates different components of biodiversity, is transparent, easily applied (subject to literature/ecological experts) and can be incorporated into LCA. Application of BioImpact for LCA requires co-ordination to identify key regions and production systems; develop the relevant scores with the assistance of ecologists; and make the results available in public LCA databases.
机译:目的生命周期评估(LCA)是一种用于大规模评估环境影响的有用方法。生物多样性和生态系统多样性是针对特定地点的,通常很复杂,并且很难在LCA框架内进行概括。在LCA框架内,目前没有全球可接受的评估生物多样性的手段。我们在澳大利亚的四个生产系统(本地林业,人工软木木材生产,农作物和牧场放牧)上引入,测试和修订BioImpact(一种将生物多样性纳入LCA框架的方法)。方法我们建议的方法(一种称为BioImpact的指标)通过一系列半定量问题,已发表的数据和专家意见,将生物多样性和生态影响纳入其中,旨在将与生物多样性有关的主要问题封装在适合LCA的干扰影响框架内。结果按单个生物多样性度量标准进行缩放,可以将其纳入LCA。与这些生产系统的物种丰富度和净初级生产力(NPP)相比,我们测试和修订了四个生产系统(本地林业,人工软木生产,作物种植和牧场放牧)的BioImpact得分。我们演示了如何使用SimaPro作为平台将分数整合到LCA中。结果与讨论对于松树种植,农作物/草场和牧场放牧,BioImpact表现出更大的影响,代表了多个物种组的生物多样性丧失。与其他土地用途相比,本地林业的影响明显较低。相比之下,所有生产过程在主要多个物种组(维管植物,无脊椎动物,鸟类)的物种丰富度上得分都很高,并且在NPP方面没有差异。将BioImpact整合到LCA中后发现,软木系统尽管每公顷每年具有更高的生物多样性影响,但与本地林业相比,每立方米的BioImpact得分略低。这可能是由于累积影响和参考基准的考虑,例如,未在原生森林上建立时收获前生物多样性水平较低;与本地林业相比,受威胁物种更少(影响较小);问题的权重不足;以及在农业开垦土地或原生林地区建立之间的差异。讨论了每个问题的BioImpact分数内标度和/或权重的改进。结论BioImpact封装了生物多样性的不同组成部分,是透明的,易于应用的(取决于文献/生态学专家),可以纳入LCA。 BioImpact在LCA中的应用需要协调以识别关键区域和生产系统;在生态学家的帮助下制定相关分数;并在公共LCA数据库中提供结果。

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