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Application of a Life Cycle Model for European Union Policy†Driven Waste Management Decision Making in Emerging Economies

Author

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  • Nemanja Stanisavljevic
  • James W. Levis
  • Morton A. Barlaz

Abstract

Solid waste life cycle modeling has predominantly focused on developed countries, but there are significant opportunities to assist developing and transition economies to minimize the environmental impact of solid waste management (SWM). Serbia is representative of a transition country and most (92%) of its waste is landfilled. As a Candidate European Union (EU) country, Serbia is expected to implement SWM strategies that meet EU directives. The Solid Waste Life†Cycle Optimization Framework (SWOLF) was used to evaluate scenarios that meet EU goals by 2030. Scenarios included combinations of landfills, anaerobic digestion, composting, material recovery facilities (MRFs), waste†to†energy (WTE) combustion, and the use of refuse†derived fuel in cement kilns. Each scenario was evaluated with and without separate collection of recyclables. Modeled impacts included cost, climate change, cumulative fossil energy demand, acidification, eutrophication, photochemical oxidation, total eco†toxicity, and total human toxicity. Trade†offs among the scenarios were evaluated because no scenario performed best in every category. In general, SWM strategies that incorporated processes that recover energy and recyclable materials performed well across categories, whereas scenarios that did not include energy recovery performed poorly. Emissions offsets attributable to energy recovery and reduced energy requirements associated with remanufacturing of recovered recyclables had the strongest influence on the results. The scenarios rankings were robust under parametric sensitivity analysis, except when the marginal electricity fuel source changed from coal to natural gas. Model results showed that the use of existing infrastructure, energy recovery, and efficient recovery of recyclables from mixed waste can reduce environmental emissions at relatively low cost.

Suggested Citation

  • Nemanja Stanisavljevic & James W. Levis & Morton A. Barlaz, 2018. "Application of a Life Cycle Model for European Union Policy†Driven Waste Management Decision Making in Emerging Economies," Journal of Industrial Ecology, Yale University, vol. 22(2), pages 341-355, April.
  • Handle: RePEc:bla:inecol:v:22:y:2018:i:2:p:341-355
    DOI: 10.1111/jiec.12564
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    Cited by:

    1. Eldbjørg Blikra Vea & Veronica Martinez-Sanchez & Marianne Thomsen, 2018. "A Review of Waste Management Decision Support Tools and Their Ability to Assess Circular Biowaste Management Systems," Sustainability, MDPI, vol. 10(10), pages 1-27, October.
    2. Junming Zhu, 2020. "Suggested use? On evidence‐based decision‐making in industrial ecology and beyond," Journal of Industrial Ecology, Yale University, vol. 24(5), pages 943-950, October.
    3. Agovino, Massimiliano & Cerciello, Massimiliano & Javed, Aamir & Rapposelli, Agnese, 2023. "Environmental legislation and waste management efficiency in Italian regions in view of circular economy goals," Utilities Policy, Elsevier, vol. 85(C).
    4. Maria-Georgeta Moldovan & Dan-Cristian Dabija & Cristina Bianca Pocol, 2022. "Resources Management for a Resilient World: A Literature Review of Eastern European Countries with Focus on Household Behaviour and Trends Related to Food Waste," Sustainability, MDPI, vol. 14(12), pages 1-13, June.

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