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Quantitative assessment of material composition of end-of-life ships using onboard documentation

Author

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  • Jain, K.P.
  • Pruyn, J.F.J.
  • Hopman, J.J.

Abstract

Ship recycling yards around the world offer a price to the ship owners for buying an obsolete vessel to demolish and recycle based on the ship's end-of-life weight. The offer price is mainly based on the type of ship and the estimated quantity of steel available. The steel weight estimation, in terms of percentage of lightweight (LDT), is carried out either on the basis of recycling yards’ experience or by an expert opinion without using any scientifically rigorous method. The accurate quantification of all the material streams of an end-of-life ship is needed for planning the ship recycling process with better resource allocation and waste management strategies, especially in light of the Hong Kong convention and the new EU regulation on ship recycling. It might also assist in better estimation of cost and income of recycling the ship. A literature survey of the subject found that a clear knowledge gap exists in this area of study, only aggregate data of materials of ships is available, no ship by ship data exist. Thus, in this paper, a methodology to quantify material streams of an individual ship using the information readily available at the end of its life is presented. The advantages of using the developed methodology are explained. Lastly, a few recommendations to improve future ship designs for safe and environmentally sound ship recycling are presented based on the knowledge gained in the methodology development process.

Suggested Citation

  • Jain, K.P. & Pruyn, J.F.J. & Hopman, J.J., 2016. "Quantitative assessment of material composition of end-of-life ships using onboard documentation," Resources, Conservation & Recycling, Elsevier, vol. 107(C), pages 1-9.
  • Handle: RePEc:eee:recore:v:107:y:2016:i:c:p:1-9
    DOI: 10.1016/j.resconrec.2015.11.017
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    1. de Brito, M.P. & van der Laan, E.A. & Irion, B.D., 2007. "Extended Producer Responsibility in the Aviation Sector," ERIM Report Series Research in Management ERS-2007-025-LIS, Erasmus Research Institute of Management (ERIM), ERIM is the joint research institute of the Rotterdam School of Management, Erasmus University and the Erasmus School of Economics (ESE) at Erasmus University Rotterdam.
    2. Binder, Claudia R. & Mosler, Hans-Joachim, 2007. "Waste-resource flows of short-lived goods in households of Santiago de Cuba," Resources, Conservation & Recycling, Elsevier, vol. 51(2), pages 265-283.
    3. Ordoñez, Isabel & Rahe, Ulrike, 2013. "Collaboration between design and waste management: Can it help close the material loop?," Resources, Conservation & Recycling, Elsevier, vol. 72(C), pages 108-117.
    4. Ardente, Fulvio & Calero Pastor, Maria & Mathieux, Fabrice & Talens Peiró, Laura, 2015. "Analysis of end-of-life treatments of commercial refrigerating appliances: Bridging product and waste policies," Resources, Conservation & Recycling, Elsevier, vol. 101(C), pages 42-52.
    5. Nicky Gregson & Mike Crang & Farid Uddin Ahamed & Nasreen Akter & Raihana Ferdous & Sadat Foisal & Ray Hudson, 2012. "Territorial Agglomeration and Industrial Symbiosis: Sitakunda-Bhatiary, Bangladesh, as a Secondary Processing Complex," Economic Geography, Taylor & Francis Journals, vol. 88(1), pages 37-58, January.
    6. Mayyas, Ahmad & Qattawi, Ala & Omar, Mohammed & Shan, Dongri, 2012. "Design for sustainability in automotive industry: A comprehensive review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(4), pages 1845-1862.
    7. Nicky Gregson & Mike Crang & Farid Uddin Ahamed & Nasreen Akter & Raihana Ferdous & Sadat Foisal & Ray Hudson, 2012. "Territorial Agglomeration and Industrial Symbiosis: Sitakunda‐Bhatiary, Bangladesh, as a Secondary Processing Complex," Economic Geography, Clark University, vol. 88(1), pages 37-58, January.
    8. Mizanur Rahman, S.M. & Mayer, Audrey L., 2015. "How social ties influence metal resource flows in the Bangladesh ship recycling industry," Resources, Conservation & Recycling, Elsevier, vol. 104(PA), pages 254-264.
    9. Paulo Ferrão & Pedro Nazareth & José Amaral, 2006. "Strategies for Meeting EU End‐of‐Life Vehicle Reuse/Recovery Targets," Journal of Industrial Ecology, Yale University, vol. 10(4), pages 77-93, October.
    10. Mathieux, Fabrice & Brissaud, Daniel, 2010. "End-of-life product-specific material flow analysis. Application to aluminum coming from end-of-life commercial vehicles in Europe," Resources, Conservation & Recycling, Elsevier, vol. 55(2), pages 92-105.
    11. Arena, Umberto & Di Gregorio, Fabrizio, 2014. "A waste management planning based on substance flow analysis," Resources, Conservation & Recycling, Elsevier, vol. 85(C), pages 54-66.
    12. Huang, Chu-Long & Vause, Jonathan & Ma, Hwong-Wen & Yu, Chang-Ping, 2012. "Using material/substance flow analysis to support sustainable development assessment: A literature review and outlook," Resources, Conservation & Recycling, Elsevier, vol. 68(C), pages 104-116.
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    2. Kanchiralla, Fayas Malik & Brynolf, Selma & Olsson, Tobias & Ellis, Joanne & Hansson, Julia & Grahn, Maria, 2023. "How do variations in ship operation impact the techno-economic feasibility and environmental performance of fossil-free fuels? A life cycle study," Applied Energy, Elsevier, vol. 350(C).

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