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首页> 外文期刊>The International Journal of Life Cycle Assessment >Assessment of Land Use Impacts on the Natural Environment Part 2: Generic Characterization Factors for Local Species Diversity in Central Europe
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Assessment of Land Use Impacts on the Natural Environment Part 2: Generic Characterization Factors for Local Species Diversity in Central Europe

机译:土地利用对自然环境影响的评估第2部分:中欧当地物种多样性的一般表征因素

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摘要

Goal, Scope and Background. Land use is an economic activity that generates large benefits for human society. One side effect, however, is that it has caused many environmental problems throughout history and still does today. Biodiversity, in particular, has been negatively influenced by intensive agriculture, forestry and the increase in urban areas and infrastructure. Integrated assessment such as Life Cycle Assessment (LCA), thus, incorporate impacts on biodiversity. The main objective of this paper is to develop generic characterization factors for land use types using empirical information on species diversity from Central Europe, which can be used in the assessment method developed in the first part of this series of paper. Methods. Based on an extensive meta-analysis, with information about species diversity on 5581 sample plots, we calculated characterization factors for 53 land use types and six intensity classes. The typology is based on the CORINE Plus classification. We took information on the standardized α-diversity of plants, moss and mollusks into account. In addition, threatened plants were considered. Linear and nonlinear models were used for the calculation of damage potentials (EDP~S). In our approach, we use the current mean species number in the region as a reference, because this determines whether specific land use types hold more or less species diversity per area. The damage potential calculated here is endpoint oriented. The corresponding characterization factors EDP~S can be used in the Life Cycle Impact Assessment as weighting factors for different types of land occupation and land use change as described in Part 1 of this paper series. Discussion. Land use has severe impacts on the environment. The ecosystem damage potential EDP~S is based on assessment of impacts of land use on species diversity. We clearly base EDP~S factors on α-diver-sity, which correlates with the local aspect of species diversity of land use types. Based on an extensive meta-analysis of biologists' field research, we were able to include data on the diversity of plant species, threatened plant species, moss and mollusks in the EDP~S. The integration of other animal species groups (e.g. insects, birds, mammals, amphibians) with their specific habitat preferences could change the characterization factors values specific for each land use type. Those mobile species groups support ecosystem functions, because they provide functional links between habitats in the landscape. Conclusions. The use of generic characterization factors in Life Cycle Impact Assessment of land use, which we have developed, can improve the basis for decision-making in industry and other organizations. It can best be applied for marginal land use decisions. However, if the goal and scope of an LCA requires it this generic assessment can be complemented with a site-dependent assessment. Recommendations and Perspectives. We recommend utilizing the developed characterization factors for land use in Central Europe and as a reference methodology for other regions. In order to assess the impacts of land use in other regions it would be necessary to sample empirical data on species diversity and to develop region specific characterization factors on a worldwide basis in LCA. This is because species diversity and the impact of land use on it can very much differ from region to region.
机译:目标,范围和背景。土地使用是一项经济活动,可为人类社会带来巨大利益。但是,副作用之一是,它在整个历史上已经造成了许多环境问题,并且至今仍然存在。集约化农业,林业以及城市地区和基础设施的增加特别对生物多样性产生了负面影响。因此,诸如生命周期评估(LCA)之类的综合评估纳入了对生物多样性的影响。本文的主要目的是利用来自中欧的物种多样性经验信息来开发土地利用类型的通用特征因子,该信息可用于本系列第一部分中开发的评估方法。方法。在广泛的荟萃分析的基础上,利用5581个样地上有关物种多样性的信息,我们计算了53种土地利用类型和六个强度等级的特征因子。类型基于CORINE Plus分类。我们考虑了有关植物,苔藓和软体动物标准化α多样性的信息。此外,还考虑了濒危植物。线性和非线性模型被用来计算潜在破坏力(EDP〜S)。在我们的方法中,我们使用该地区当前的平均物种数作为参考,因为这确定了特定土地利用类型在每个区域中是否拥有或多或少的物种多样性。此处计算出的潜在损坏是面向端点的。相应的特征因子EDP〜S可以在生命周期影响评估中用作不同类型的土地占用和土地利用变化的加权因子,如本系列文章的第1部分所述。讨论。土地使用会对环境造成严重影响。生态系统潜在破坏能力EDP〜S基于对土地利用对物种多样性影响的评估。我们清楚地将EDP〜S因素建立在α多样性的基础上,这与土地利用类型的物种多样性的局部方面相关。基于对生物学家现场研究的广泛荟萃分析,我们能够将EDP〜S中植物物种,濒危植物物种,苔藓和软体动物的多样性数据包括在内。将其他动物物种组(例如昆虫,鸟类,哺乳动物,两栖动物)与其特定的栖息地偏好结合在一起,可能会改变每种土地利用类型所特有的特征因子值。这些移动物种组支持生态系统功能,因为它们提供了景观中栖息地之间的功能联系。结论。我们开发的在土地使用的生命周期影响评估中使用通用特征因子可以改善行业和其他组织决策的基础。最好将其用于边际土地使用决策。但是,如果LCA的目标和范围需要它,则可以使用基于站点的评估来补充这种通用评估。建议和观点。我们建议将已开发的特征因子用于中欧的土地利用,并作为其他地区的参考方法。为了评估其他地区土地使用的影响,有必要对物种多样性的经验数据进行抽样,并在全球范围内以LCA为基础开发区域特定的特征因子。这是因为物种的多样性以及土地使用对其的影响在不同地区之间可能有很大差异。

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