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Applying input-output analysis to scenario analysis of ecological footprints

机译:将投入产出分析应用于生态足迹情景分析

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Application of input-output analysis to ecological footprints (EFs) is shifting from an ex-post static calculation toward an ex-ante scenario analysis for enhancing the policy relevance of EF analysis. This change in application prompts two issues requiring careful examination: (1) what is measured by Leontief inverses or extended environmental Leontief inverses, and (2) whether a sector's land multiplier (or compositions of land multiplier) can appropriately reflect the effect of delivering one unit of the sector's output to final demand on the required area(s) of production lands used by the sector itself and by other producing sectors whose products are contributed directly and indirectly to its production. The underlying message of these two questions is whether the assumed linear marginal relationship between a sector's output and its intermediate inputs (input-output coefficients)-a critical assumption made by W. Leontief to transform a transactions table from an accounting framework into the input-output model-can be extended to assume that the marginal relationship between a sector's output and the area of production land it uses for generating output is fixed (land-output marginal coefficient equal to average coefficient). By reviewing the literature on input-output analysis and its application to environmental issues and by theoretically and empirically examining the relation between sector output and land appropriation, this study advises against the use of land multipliers or their compositions in the EF scenario analysis.rnTo apply the input-output model to EF scenario analysis for enhancing policy relevance with due attention to the relationship between sector output and land appropriation, this study suggests a two-stage EF calculation procedure. In the first stage, the input-output application estimates only the required raw materials (or generated pollutants) for meeting a given consumption pattern, which is the objective of environmental input-output analysis; in the second stage, the estimated amount of raw materials or pollutants is converted into land/water area, and a choice of conversion methods is suggested according to the research questions and the availability of conversion methods and required data.
机译:投入产出分析在生态足迹(EFs)中的应用正从事后静态计算转向事前情景分析,以增强EF分析的政策相关性。应用程序的更改引发了两个问题,需要仔细研究:(1)Leontief逆度量或扩展的环境Leontief逆度量的内容,以及(2)一个部门的土地乘数(或土地乘数的组成)是否可以适当地反映交付一个土地的影响该部门自身和其他直接或间接为其产品贡献产品的生产部门使用的生产用地所需面积上该部门产出与最终需求的最终单位。这两个问题的基本信息是,一个部门的产出与其中间投入之间的假定线性边际关系(投入产出系数)是否是W. Leontief做出的一项关键假设,即将交易表从会计框架转换为投入-产出模型-可以扩展为假定一个部门的产出与其用于产生产出的生产土地面积之间的边际关系是固定的(土地产出边际系数等于平均系数)。通过回顾有关投入产出分析及其在环境问题中的应用的文献,并通过理论和经验检验部门产出与土地占用之间的关系,本研究建议不要在EF情景分析中使用土地乘数或其组成.rn EF情景分析的投入产出模型,通过适当关注部门产出与土地占用之间的关系,以增强政策相关性,该研究提出了一个两阶段的EF计算程序。在第一阶段,投入产出应用程序仅估算满足给定消费模式所需的原材料(或产生的污染物),这是环境投入产出分析的目标;在第二阶段,将估计的原料或污染物的量转换为土地/水域,并根据研究问题以及转换方法的可用性和所需数据,提出转换方法的选择。

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