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Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum

[Image: see text] This study, encompassing 231 countries and regions, quantifies the global transfer of three critical metals (neodymium, cobalt, and platinum) considered vital for low-carbon technologies by means of material flow analysis (MFA), using trade data (BACI) and the metal contents of tra...

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Autores principales: Nansai, Keisuke, Nakajima, Kenichi, Kagawa, Shigemi, Kondo, Yasushi, Suh, Sangwon, Shigetomi, Yosuke, Oshita, Yuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3915747/
https://www.ncbi.nlm.nih.gov/pubmed/24387330
http://dx.doi.org/10.1021/es4033452
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author Nansai, Keisuke
Nakajima, Kenichi
Kagawa, Shigemi
Kondo, Yasushi
Suh, Sangwon
Shigetomi, Yosuke
Oshita, Yuko
author_facet Nansai, Keisuke
Nakajima, Kenichi
Kagawa, Shigemi
Kondo, Yasushi
Suh, Sangwon
Shigetomi, Yosuke
Oshita, Yuko
author_sort Nansai, Keisuke
collection PubMed
description [Image: see text] This study, encompassing 231 countries and regions, quantifies the global transfer of three critical metals (neodymium, cobalt, and platinum) considered vital for low-carbon technologies by means of material flow analysis (MFA), using trade data (BACI) and the metal contents of trade commodities, resolving the optimization problem to ensure the material balance of the metals within each country and region. The study shows that in 2005 international trade led to global flows of 18.6 kt of neodymium, 154 kt of cobalt, and 402 t of platinum and identifies the main commodities and top 50 bilateral trade links embodying these metals. To explore the issue of consumption efficiency, the flows were characterized according to the technological level of each country or region and divided into three types: green (“efficient use”), yellow (“moderately efficient use”), and red (“inefficient use”). On this basis, the shares of green, yellow, and red flows in the aggregate global flow of Nd were found to be 1.2%, 98%, and 1.2%, respectively. For Co, the respective figures are 53%, 28%, and 19%, and for Pt 15%, 84%, and 0.87%. Furthermore, a simple indicator focusing on the composition of the three colored flows for each commodity was developed to identify trade commodities that should be prioritized for urgent technical improvement to reduce wasteful use of the metals. Based on the indicator, we discuss logical, strategic identification of the responsibilities and roles of the countries involved in the global flows.
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spelling pubmed-39157472014-02-06 Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum Nansai, Keisuke Nakajima, Kenichi Kagawa, Shigemi Kondo, Yasushi Suh, Sangwon Shigetomi, Yosuke Oshita, Yuko Environ Sci Technol [Image: see text] This study, encompassing 231 countries and regions, quantifies the global transfer of three critical metals (neodymium, cobalt, and platinum) considered vital for low-carbon technologies by means of material flow analysis (MFA), using trade data (BACI) and the metal contents of trade commodities, resolving the optimization problem to ensure the material balance of the metals within each country and region. The study shows that in 2005 international trade led to global flows of 18.6 kt of neodymium, 154 kt of cobalt, and 402 t of platinum and identifies the main commodities and top 50 bilateral trade links embodying these metals. To explore the issue of consumption efficiency, the flows were characterized according to the technological level of each country or region and divided into three types: green (“efficient use”), yellow (“moderately efficient use”), and red (“inefficient use”). On this basis, the shares of green, yellow, and red flows in the aggregate global flow of Nd were found to be 1.2%, 98%, and 1.2%, respectively. For Co, the respective figures are 53%, 28%, and 19%, and for Pt 15%, 84%, and 0.87%. Furthermore, a simple indicator focusing on the composition of the three colored flows for each commodity was developed to identify trade commodities that should be prioritized for urgent technical improvement to reduce wasteful use of the metals. Based on the indicator, we discuss logical, strategic identification of the responsibilities and roles of the countries involved in the global flows. American Chemical Society 2014-01-06 2014-02-04 /pmc/articles/PMC3915747/ /pubmed/24387330 http://dx.doi.org/10.1021/es4033452 Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Nansai, Keisuke
Nakajima, Kenichi
Kagawa, Shigemi
Kondo, Yasushi
Suh, Sangwon
Shigetomi, Yosuke
Oshita, Yuko
Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title_full Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title_fullStr Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title_full_unstemmed Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title_short Global Flows of Critical Metals Necessary for Low-Carbon Technologies: The Case of Neodymium, Cobalt, and Platinum
title_sort global flows of critical metals necessary for low-carbon technologies: the case of neodymium, cobalt, and platinum
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3915747/
https://www.ncbi.nlm.nih.gov/pubmed/24387330
http://dx.doi.org/10.1021/es4033452
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