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生物多样性影响评估(BIA+)——生物多样性筛选方法框架

Biodiversity impact assessment (BIA+) - methodological framework for screening biodiversity.

作者信息

Winter Lisa, Pflugmacher Stephan, Berger Markus, Finkbeiner Matthias

机构信息

Department of Sustainable Engineering, Technical University Berlin, Germany.

Institute of Biotechnology, Technical University Berlin, Germany.

出版信息

Integr Environ Assess Manag. 2018 Mar;14(2):282-297. doi: 10.1002/ieam.2006. Epub 2017 Dec 19.

Abstract

For the past 20 years, the life cycle assessment (LCA) community has sought to integrate impacts on biodiversity into the LCA framework. However, existing impact assessment methods still fail to do so comprehensively because they quantify only a few impacts related to specific species and regions. This paper proposes a methodological framework that will allow LCA practitioners to assess currently missing impacts on biodiversity on a global scale. Building on existing models that seek to quantify the impacts of human activities on biodiversity, the herein proposed methodological framework consists of 2 components: a habitat factor for 14 major habitat types and the impact on the biodiversity status in those major habitat types. The habitat factor is calculated by means of indicators that characterize each habitat. The biodiversity status depends on parameters from impact categories. The impact functions, relating these different parameters to a given response in the biodiversity status, rely on expert judgments. To ensure the applicability for LCA practitioners, the components of the framework can be regionalized on a country scale for which LCA inventory data is more readily available. The weighting factors for the 14 major habitat types range from 0.63 to 1.82. By means of area weighting of the major habitat types in a country, country-specific weighting factors are calculated. In order to demonstrate the main part of the framework, examples of impact functions are given for the categories "freshwater eutrophication" and "freshwater ecotoxicity" in 1 major habitat type. The results confirm suitability of the methodological framework. The major advantages are the framework's user-friendliness, given that data can be used from LCA databases directly, and the complete inclusion of all levels of biodiversity (genetic, species, and ecosystem). It is applicable for the whole world and a wide range of impact categories. Integr Environ Assess Manag 2018;14:282-297. © 2017 SETAC.

摘要

在过去20年里,生命周期评估(LCA)领域一直致力于将生物多样性影响纳入LCA框架。然而,现有的影响评估方法仍未能全面做到这一点,因为它们仅量化了与特定物种和区域相关的少数影响。本文提出了一个方法框架,使LCA从业者能够在全球范围内评估目前缺失的生物多样性影响。基于现有的旨在量化人类活动对生物多样性影响的模型,本文提出的方法框架由两个部分组成:14种主要栖息地类型的栖息地因子以及这些主要栖息地类型中生物多样性状况的影响。栖息地因子通过表征每个栖息地的指标来计算。生物多样性状况取决于影响类别的参数。将这些不同参数与生物多样性状况的给定响应联系起来的影响函数依赖于专家判断。为确保对LCA从业者的适用性,该框架的组成部分可在国家层面进行区域化,因为LCA清单数据在国家层面更容易获取。14种主要栖息地类型的权重因子范围为0.63至1.82。通过对一个国家主要栖息地类型进行面积加权,计算出特定国家的权重因子。为了展示该框架的主要部分,给出了1种主要栖息地类型中“淡水富营养化”和“淡水生态毒性”类别的影响函数示例。结果证实了该方法框架的适用性。主要优点是该框架用户友好,因为可以直接使用LCA数据库中的数据,并且全面纳入了生物多样性的所有层次(基因、物种和生态系统)。它适用于全球以及广泛的影响类别。《综合环境评估与管理》2018年;14:282 - 297。© 2017 SETAC。

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