Assessing the recycling efficiency of copper from end-of-life products in Western Europe

被引:53
作者
Ruhrberg, Martin [1 ]
机构
[1] ICSG, P-1000013 Lisbon, Portugal
关键词
collection; copper; end-of-life management; flow model; metal; recovery; recycling; recycling input rate; recycling efficiency rate; scrap;
D O I
10.1016/j.resconrec.2006.01.003
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Recognizing that the recycling of copper and its alloying elements is often not well documented or fully understood, this paper quantifies the end-of-life recycling efficiency rate of copper using the copper flow model developed by the International Copper Study Group (ICSG). The model is complemented by results from a flow study for Western Europe in 1999. The ICSG model is based on a simultaneous use of a "Lifetime Approach" (based on historical end use data and average product lifetimes), an "End-of-Life Approach" (based on reported, measured or estimated end-of-life product flows) and a "Scrap Balance Approach (based on reported scrap use data). The "Lifetime Approach" predicts a copper reservoir in use of similar to 78 million tonnes of copper and alloys. for Western Europe. For 1999, it was estimated that the copper scrap availability and the old scrap recovery amounted to similar to 2.7 million tonnes and similar to 1.6 million tonnes of copper and alloys, respectively. The corresponding end-of-life recycling efficiency rate for end-of-life copper and copper alloy products in Western Europe in 1999 was estimated to be around 63% in the end-of-life approach, 64% in the lifetime approach, and 67% according to the scrap balance approach excluding outflows to other metal loops, and 69%, 70%, and 73%, respectively, including all identified outflows to other metal recycling loops. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:141 / 165
页数:25
相关论文
共 50 条
[31]   The Design Value for Recycling End-of-Life Photovoltaic Panels [J].
Cali, Michele ;
Hajji, Bekkay ;
Nitto, Gioele ;
Acri, Alberto .
APPLIED SCIENCES-BASEL, 2022, 12 (18)
[32]   Recycling technology of end-of-life photovoltaic panels: a review [J].
Yan, Guanghui ;
Zhang, Mingrui ;
Sun, Zongsheng ;
Zhao, Pengfei ;
Zhang, Bo .
ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2023, 45 (04) :10890-10908
[33]   End-of-life of fuel cell and hydrogen products: A state of the art [J].
Maria Ferriz, Ana ;
Bernad, Alfonso ;
Mori, Mitja ;
Fiorot, Sabina .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (25) :12872-12879
[34]   Antimony Recovery from End-of-Life Products and Industrial Process Residues: A Critical Review [J].
Dupont D. ;
Arnout S. ;
Jones P.T. ;
Binnemans K. .
Journal of Sustainable Metallurgy, 2016, 2 (1) :79-103
[35]   Recycling Potential of Plastic Resources from End-of-Life Passenger Vehicles in China [J].
Li, Yang ;
Huang, Shiyu ;
Liu, Yanhui ;
Ju, Yiyi .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2021, 18 (19)
[36]   Recycling of reclaimed fibers from end-of-life tires in hot mix asphalt [J].
Bocci, Edoardo ;
Prosperi, Emiliano .
JOURNAL OF TRAFFIC AND TRANSPORTATION ENGINEERING-ENGLISH EDITION, 2020, 7 (05) :678-687
[37]   From efficiency to eternity: A holistic review of photovoltaic panel degradation and End-of-Life management [J].
Anusuya, K. ;
Vijayakumar, K. ;
Manikandan, S. .
SOLAR ENERGY, 2023, 265
[38]   GPS and radio tracking of end-of-life products [J].
Lee, JA ;
Thomas, VM .
PROCEEDINGS OF THE 2004 IEEE INTERNATIONAL SYMPOSIUM ON ELECTRONICS & THE ENVIRONMENT, CONFERENCE RECORD, 2004, :309-312
[39]   A Review of End-of-Life Silicon Solar Photovoltaic Modules and the Potential for Electrochemical Recycling [J].
Lee, Jackson ;
Duffy, Noel ;
Allen, Jessica .
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH, 2025, 6 (02)
[40]   A review of end-of-life crystalline silicon solar photovoltaic panel recycling technology [J].
Wang, Xiaopu ;
Tian, Xinyi ;
Chen, Xiaodong ;
Ren, Lingling ;
Geng, Chunxiang .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2022, 248