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Status of ITU-T International Standard Development on Rare Metal Recycling

희소금속 재활용을 위한 ITU-T 국제표준 개발현황

  • Lee, Mi Hye (Korea Institute for Rare Metals, Korea Institute of Industrial Technology) ;
  • Choi, Won Jung (Korea Institute for Rare Metals, Korea Institute of Industrial Technology) ;
  • Seo, Seok-Jun (Korea Institute for Rare Metals, Korea Institute of Industrial Technology) ;
  • Kim, Bum Sung (Korea Institute for Rare Metals, Korea Institute of Industrial Technology)
  • 이미혜 (한국생산기술연구원 한국희소금속산업기술센터) ;
  • 최원정 (한국생산기술연구원 한국희소금속산업기술센터) ;
  • 서석준 (한국생산기술연구원 한국희소금속산업기술센터) ;
  • 김범성 (한국생산기술연구원 한국희소금속산업기술센터)
  • Received : 2016.07.18
  • Accepted : 2016.08.11
  • Published : 2016.08.28

Abstract

Owing to increasing demand of rare metals present in ICT products, it is necessary to promote the rare metal recycling industry from an environmental viewpoint and to prevent climate change. Despite the fact that information for toxic substances is partly indicated, a legal basis and an international standard indicating usage of rare metals is insufficient. In order to address this issue, a newly created study group of environment and climate change at the ITU (International Telecommunication Union) is doing research to develop methodologies for recycling rare metals from ICT products in an eco-friendly way. Under this group, the Republic of Korea has established two international standards related to rare metals present in ICT products. The first is 'Release of rare metal information for ICT products (ITU-T L.1100)' and the other is 'Quantitative and qualitative analysis methods for rare metals (ITU-T L.1101)'. A new proposal for recommending the provision of rare metal information through a label by manufacturers and consumer/recycling businesses has been approved recently and is supposed to be published later in 2016. Moreover, these recommendations are also being extended to IEC, ISO and other standardization organizations and a strategy to reinforce the ability for domestic standardization is being established in accordance with industrial requirements. This will promote efficient recycling of rare metals from ICT products and will help improve the domestic supply of rare metals.

Keywords

References

  1. Marc Humphries: Rare Earth Elements, The Global Supply Chain, Specialist in Energy Policy (2012) 8.
  2. H. S. Choi, Y. H. Kim and Y. G. Ji: Overview on Rare Metal Industries and Their Recycling, Prospectives of Industrial Chemistry, 13 (2010) 20.
  3. C. S. Ha and S. S. Park: The Science & Technology, 201.01 (2012) 54.
  4. M. H. Hong, I. S. Kang, C. K. Lee and W. B. Kim: J. Korean Powder Metal. Inst., 22 (2015) 443. https://doi.org/10.4150/KPMI.2015.22.6.443
  5. Directive 2002/96/EC, Waste electrical and electronic equipment (WEEE).
  6. Directive 2011/65/EU, Restriction of Hazardous Substances in Electrical and Electronic Equipment.
  7. ITU-T L.1100, Procedure for recycling rare metals in information and communication technology goods.
  8. ITU-T L.1101, Measurement methods to characterize rare metals in information and communication technology goods.
  9. ITU-T Resolution 79, The role of telecommunications/information and communication technologies in handling and controlling e-waste from telecommunication and information technology equipment and methods of treating it.
  10. ITU-D Study Group 1 Report, Strategies and policies for the proper disposal or reuse of telecommunications/ICT waste material.

Cited by

  1. Trends and Implications of International Standardization for Rare Earths vol.25, pp.2, 2018, https://doi.org/10.4150/KPMI.2018.25.2.165