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The Waste Input-Output Approach to Materials Flow Analysis Concepts and Application to Base Metals

机译:废物投入-产出方法在物料流分析中的应用及其在贱金属中的应用

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摘要

A general analytical model of materials flow analysis (MFA) incorporating physical waste input-output is proposed that is fully consistent with the mass balance principle. Exploiting the triangular nature of the matrix of input coefficients, which is obtained by rearranging the ordering of sectors according to degrees of fabrication, the material composition matrix is derived, which gives the material composition of products. A formal mathematical definition of materials (or the objects, the flow of which is to be accounted for by MFA) is also introduced, which excludes the occurrence of double accounting in economy-wide MFAs involving diverse inputs. By using the model, monetary input-output (IO) tables can easily be converted into a physical material flow account (or physical input-output tables [PIOT]) of an arbitrary number of materials, and the material composition of a product can be decomposed into its input origin. The first point represents substantial saving in the otherwise prohibitive cost that is associated with independent compilation of PIOT The proposed methodology is applied to Japanese IO data for the flow of II base metals and their scrap (available as e-supplement on the J/E Web site).
机译:提出了一种包含物理废物输入输出的物料流分析(MFA)的通用分析模型,该模型完全符合质量平衡原理。利用输入系数矩阵的三角性质,该系数是通过根据制造程度重新排列扇区的顺序而获得的,得出了材料成分矩阵,该矩阵给出了产品的材料成分。还介绍了材料(或对象,其流程由MFA负责)的正式数学定义,它排除了在涉及多种输入的经济范围内的MFA中出现双重核算的情况。通过使用该模型,可以轻松地将货币输入输出(IO)表转换为任意数量材料的物理物料流帐户(或物理输入输出表[PIOT]),并且产品的物料组成可以是分解为其输入来源。第一点代表了与PIOT独立编译相关的,原本可以避免的成本上的大量节省。拟议的方法应用于II贱金属及其废料流的日本IO数据(可在J / E网站上作为电子补充获得)现场)。

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