TY - JOUR
T1 - UPIOM
T2 - A new tool of mfa and its application to the flow of iron and steel associated with car production
AU - Nakamura, Shinichiro
AU - Kondo, Yasushi
AU - Matsubae, Kazuyo
AU - Nakajima, Kenichi
AU - Nagasaka, Tetsuya
PY - 2011/2/1
Y1 - 2011/2/1
N2 - Identification of the flow of materials and substances associated with a product system provides useful information for Life Cycle Analysis (LCA), and contributes to extending the scope of complementarity between LCA and Materials Flow Analysis/Substances Flow Analysis (MFA/SFA), the two major tools of industrial ecology. This paper proposes a new methodology based on input-output analysis for identifying the physical input-output flow of individual materials that is associated with the production of a unit of given product, the unit physical input-output by materials (UPIOM). While the Sankey diagram has been a standard tool for the visualization of MFA/SFA, with an increase in the complexity of the flows under consideration, which will be the case when economywide intersectoral flows of materials are involved, the Sankey diagram may become too complex for effective visualization. Analternativewayto visually represent materialflowsis proposed which makes use of triangulation of the flow matrix based on degrees of fabrication. The proposed methodology is applied to the flow of pig iron and iron and steel scrap that are associated with the production of a passenger car in Japan. Its usefulness to identify a specific MFA pattern from the original IO table is demonstrated.
AB - Identification of the flow of materials and substances associated with a product system provides useful information for Life Cycle Analysis (LCA), and contributes to extending the scope of complementarity between LCA and Materials Flow Analysis/Substances Flow Analysis (MFA/SFA), the two major tools of industrial ecology. This paper proposes a new methodology based on input-output analysis for identifying the physical input-output flow of individual materials that is associated with the production of a unit of given product, the unit physical input-output by materials (UPIOM). While the Sankey diagram has been a standard tool for the visualization of MFA/SFA, with an increase in the complexity of the flows under consideration, which will be the case when economywide intersectoral flows of materials are involved, the Sankey diagram may become too complex for effective visualization. Analternativewayto visually represent materialflowsis proposed which makes use of triangulation of the flow matrix based on degrees of fabrication. The proposed methodology is applied to the flow of pig iron and iron and steel scrap that are associated with the production of a passenger car in Japan. Its usefulness to identify a specific MFA pattern from the original IO table is demonstrated.
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U2 - 10.1021/es1024299
DO - 10.1021/es1024299
M3 - Article
C2 - 21174465
AN - SCOPUS:79851483558
SN - 0013-936X
VL - 45
SP - 1114
EP - 1120
JO - Environmental Science & Technology
JF - Environmental Science & Technology
IS - 3
ER -