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Eco-efficiency analysis of the plastic recovery systems in Hyogo eco-town project

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Part of the Eco-Efficiency in Industry and Science book series (ECOE,volume 22)

Abstract

Japan started the promotion and development of eco-towns in 1997, with the aim of reducing the environmental pressure through a symbiosis of industries and cities. Hyogo prefecture (located in the west of Japan) has been promoting a recycling-oriented society with the cooperation of industries, citizens and businesses.

This study analysed the possibilities of implementing a reverse logistics network for plastics recovery and its coupling with existing industries and technologies. Since many industries are operating in Hyogo, the use of their facilities and/or equipment for plastics recovery has been proposed, specially the steel and chemical industries. Reverse logistics was used to analyse the supply of input plastics in terms of quantity and quality. This means clustering small neighbouring cities for synchronised sorted collection (there is a difference between small cities, which already use sorted collection, and big cities, where no sorted collection for plastics exists), and coordinating activities between larger cities.

This study was part of a research project aimed at closing the loop in the Japanese plastics industry by introducing an integral approach with improvements to the upstream and downstream sides of the plastic supply chain life cycle.

This paper presents the results of the first part of the study, which included the use of domestic plastic packaging as plastic sources and material, feedstock and energy recovery as recovery technologies. The results of this study indicate that the application of reverse logistics, combined with the appropriate recovery technologies in Hyogo eco-town, is both environmentally and economically beneficial. However, it requires close collaboration between local governments and the industrial sector.

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References

  • APME (2001) Plastics - a material of choice for the packaging industry. Insights into consumption and recovery in Western Europe. N Association of Plastics Manufacturers in Europe, Brussels

    Google Scholar 

  • De Brito M, Dekker R (2004) A Framework for Reverse Logistics. In: Dekker R, Fleischmann M, Inderfurth K, van Wassenhove L (eds) Reverse Logistics -Quantitative Models for Closed-Loop Supply Chains. Springer-Verlag, Berlin, pp 3-27

    Google Scholar 

  • Eggels P, Ansems A, van der Ven B (2001) Eco-efficiency of Recovery Scenarios of Plastic Packaging. TNO report intended for the Association of Plastic manufacturers in Europe (APME), Brussels

    Google Scholar 

  • Eik A, Brattebo H (2001) Development of indicators to evaluate eco-efficiency of recycling systems. NTNU Industrial Ecology Program, Trondheim, Norway

    Google Scholar 

  • Fleischmann M (2001) Quantitative Models for Reverse Logistics. Springer-Verlag, Berlin

    Google Scholar 

  • Heyde M, Kremer M (1999) Recycling and Recovery of Plastics from Packaging in Domestic Waste; LCA-Type Analysis of Different Strategies. In: LCA Documents Vol. 5. Germany, Eco-Informa Press

    Google Scholar 

  • Hyogo Eco-Town Promotion Conference (2003a) the Basic Concepts for the Construction of the Hyogo Eco-Town Support System. Hyogo Prefecture Environmental Create Center Public Corporation. (In Japanese)

    Google Scholar 

  • Hyogo Eco-Town Promotion Conference (2003b) Hyogo Eco-Town Conception. Hyogo Prefecture Environmental Create Center Public Corporation. (In Japanese)

    Google Scholar 

  • Indigo Development (2004)Industrial Ecology. From the Indigo Development Home page (d.d. June 5 2004) http://www.indigodev.com/IE.html

    Google Scholar 

  • Ishikawa M (1996) A Logistics Model for Post Consumer Waste Recycling. Journal of Japan Packaging Science and Technology, 5(2)

    Google Scholar 

  • Lundquist L, Leterrier Y, Sunderland P, Manson J (2000) Life Cycle Engineering of Plastics: technology, Economy and the Environment. Elsevier, Amsterdam, the Netherlands

    Google Scholar 

  • Moriguchi Y (1999) Recycling and Waste Management from the viewpoint of Material Flow Accounting. Journal of Material Cycles and Waste Management, 1:2-9

    Google Scholar 

  • Morioka T, Yoshida N, Yamamoto Y (2003) Cycle-Closing Product Chain Management with Appropriate Production Site Metabolism towards Zero-Emission in an Industrial Machinery. Clean Technology and Environmental Policy Journal, 6:7-17

    CrossRef  CAS  Google Scholar 

  • Patel M, Von Thienen N, Jochem E, Worrell E (1999) Recycling of Plastics in Germany. Resource, Conservation and Recycling 29(2000):65-90

    Google Scholar 

  • PWMI (2002) Examination of General Plastics Treatment and Disposal Systems with the Use of LCA (in Japanese). Plastic Waste Management Institute, Japan

    Google Scholar 

  • PWMI (2004) An Introduction to Plastic Recycling in Japan. Plastic Waste Management Institute, Japan

    Google Scholar 

  • Saling P, Kicherer A, Dittrich-Krämer B, Wittlinger R, Zombik W, Schmidt I, Schrott W, Schmidt S (2002) Eco-efficiency analysis by BASF - The method. The International Journal of Life Cycle Assessment, 7(4):203-218

    CrossRef  Google Scholar 

  • Yabar H, Morioka T (2002) Evaluation of Municipal Solid Waste Management in Suita City (Japan). Japan Society of Waste Management Experts, F3-1, Japan

    Google Scholar 

  • Yabar H, Morioka T (2003) Implementation Possibilities of Reverse Logistics and Technologies for Plastics Recovery in Hyogo Eco-Town Project. Society for Environmental Economics and Policy Studies, S-1-5, Japan

    Google Scholar 

  • Yoshinaga Y, Nishina Y, Inoko M, Saito S, Tsuyuguchi T (2002) Inverse Logistics and Recycling Facilities Network Evaluation System. NKK Technical review No 87

    Google Scholar 

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Yabar, H., Morioka, T. (2007). Eco-efficiency analysis of the plastic recovery systems in Hyogo eco-town project. In: Huppes, G., Ishikawa, M. (eds) Quantified Eco-Efficiency. Eco-Efficiency in Industry and Science, vol 22. Springer, Dordrecht. https://doi.org/10.1007/1-4020-5399-1_13

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