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Measuring material cycling in industrial systems

机译:测量工业系统中的物料循环

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As the negative environmental implications of a modern industrial economy have begun to be recognized, a growing comprehension of the key role of material flows in industrial systems has developed. To this end, several indices characterizing material cycling have been developed. Current indices of material cycling for industrial systems, however, do not effectively measure cycling due to the lack of consideration of both direct and indirect flows in a system. A physical flow modeling approach from ecology, input-output flow analysis, is used in this study to develop cycling indices to address the limited scope of existing measures. The input-output cycling metrics measure the percent of both direct and indirect flows in a system or in a particular process that are cycled. Including the effects of indirect flows is particularly important because their role (relative to direct flows) grows as cycling increases. The input-output cycling indices are compared to traditional industrial cycling metrics in this paper with a set of hypothetical cases. From these comparisons, the input-output cycling metrics are shown to measure cycling of both direct and indirect flows in complex systems while traditional metrics are shown to only account for direct flows. (c) 2007 Elsevier B.V. All rights reserved.
机译:随着人们开始认识到现代工业经济对环境的负面影响,人们对物质流在工业系统中的关键作用的理解日益增强。为此,已经开发了表征材料循环的几个指标。然而,由于缺乏对系统中直接和间接流动的考虑,目前用于工业系统的材料循环的指标不能有效地测量循环。在这项研究中,采用了一种基于生态学,输入-输出流量分析的物理流量建模方法来开发循环指数,以解决现有措施的有限范围。输入输出循环度量标准可度量循环的系统或特定过程中直接和间接流的百分比。包括间接流动的影响特别重要,因为它们的作用(相对于直接流动)随着循环的增加而增长。通过一系列假设案例,将投入产出循环指数与传统的工业循环指标进行了比较。通过这些比较,显示了输入-输出循环度量来测量复杂系统中直接流和间接流的循环,而传统度量仅显示出直接流。 (c)2007 Elsevier B.V.保留所有权利。

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