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Challenges and Strategies for Bio-Based and Biodegradable Plastic Waste Management in Europe

Author

Listed:
  • Žaneta Stasiškienė

    (Institute of Environmental Engineering, Kaunas University of Technology, Gedimino St. 50, LT-44239 Kaunas, Lithuania)

  • Jelena Barbir

    (Research and Transfer Centre “Sustainable Development & Climate Change Management” (FTZ-NK), Faculty of Life Sciences, Hamburg University of Applied Sciences, D-21033 Hamburg, Germany)

  • Lina Draudvilienė

    (Institute of Environmental Engineering, Kaunas University of Technology, Gedimino St. 50, LT-44239 Kaunas, Lithuania)

  • Zhi Kai Chong

    (Institute of Circular Resource Engineering and Management (CREM), Hamburg University of Technology, D-21073 Hamburg, Germany)

  • Kerstin Kuchta

    (Institute of Circular Resource Engineering and Management (CREM), Hamburg University of Technology, D-21073 Hamburg, Germany)

  • Viktoria Voronova

    (Department of Civil Engineering and Architecture, Tallinn University of Technology, EE-19086 Tallinn, Estonia)

  • Walter Leal Filho

    (Research and Transfer Centre “Sustainable Development & Climate Change Management” (FTZ-NK), Faculty of Life Sciences, Hamburg University of Applied Sciences, D-21033 Hamburg, Germany)

Abstract

In recent years, an increasing trend towards replacement of conventional fossil-based plastics with bio-based plastics was noticed, i.e., production of plastics partly or fully made from biomass is rapidly expanding. Currently, bio-based and biodegradable plastics have a very small market size, approximately only 1% of all plastics produced. However, the forecast of the global bioplastics production capacities predicts an increase from approximately 2.417 million tonnes in 2021 to approximately 7.593 million tonnes in 2026, more than three times the current capacity. Therefore, it is necessary to assess the challenges and identify the barriers for bio-based and biodegradable plastics for waste management and to evaluate the effectiveness of current plastic waste management strategies for the efficient waste management of bio-based and biodegradable plastics. The main barriers and motivators of the biodegradable and biodegradable plastics market that have been identified include macroeconomic factors, regulatory factors, technological factors, and social factors. The bio-based and biodegradable plastics have to be separately collected and treated under mostly controlled, regulated conditions. However, currently, there are no legal provisions providing for the separate collection of bio-based plastics, leading to their disposal with either hazardous waste, conventional plastics, or municipal waste. Since the effective plastic waste management strategy relates to good performance in each step of the waste management process, bio-based and biodegradable plastic waste management could, therefore, be based on an effective strategy for the management of plastic waste. However, there is a need for standardizing waste collection systems and creating a harmonized waste collection infrastructure, which would lead to effective sorting of bio-based plastic waste.

Suggested Citation

  • Žaneta Stasiškienė & Jelena Barbir & Lina Draudvilienė & Zhi Kai Chong & Kerstin Kuchta & Viktoria Voronova & Walter Leal Filho, 2022. "Challenges and Strategies for Bio-Based and Biodegradable Plastic Waste Management in Europe," Sustainability, MDPI, vol. 14(24), pages 1-17, December.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:24:p:16476-:d:998130
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    References listed on IDEAS

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    1. Chunhui Wang & Junhong Tang & Haixia Yu & Yiyi Wang & Huanxuan Li & Shaodan Xu & Gang Li & Qian Zhou, 2022. "Microplastic Pollution in the Soil Environment: Characteristics, Influencing Factors, and Risks," Sustainability, MDPI, vol. 14(20), pages 1-14, October.
    2. Oecd, 2013. "Policies for Bioplastics in the Context of a Bioeconomy," OECD Science, Technology and Industry Policy Papers 10, OECD Publishing.
    3. Cristina L. Popa & Simona I. Dontu & Dan Savastru & Elfrida M. Carstea, 2022. "Role of Citizen Scientists in Environmental Plastic Litter Research—A Systematic Review," Sustainability, MDPI, vol. 14(20), pages 1-13, October.
    4. Sivappirakasam Kamalakkannan & Amila Abeynayaka & Asela K. Kulatunga & Rajeev Kumar Singh & Miwa Tatsuno & Premakumara Jagath Dickella Gamaralalage, 2022. "Life Cycle Assessment of Selected Single-Use Plastic Products towards Evidence-Based Policy Recommendations in Sri Lanka," Sustainability, MDPI, vol. 14(21), pages 1-25, October.
    5. Jiajia Zheng & Sangwon Suh, 2019. "Strategies to reduce the global carbon footprint of plastics," Nature Climate Change, Nature, vol. 9(5), pages 374-378, May.
    6. Ricard Garrido & Luisa F. Cabeza & Victor Falguera, 2021. "An Overview of Bioplastic Research on Its Relation to National Policies," Sustainability, MDPI, vol. 13(14), pages 1-36, July.
    7. Ayah Alassali & Caterina Picuno & Zhi Kai Chong & Jinyang Guo & Roman Maletz & Kerstin Kuchta, 2021. "Towards Higher Quality of Recycled Plastics: Limitations from the Material’s Perspective," Sustainability, MDPI, vol. 13(23), pages 1-22, November.
    8. Caterina Picuno & Emile Van Eygen & Marieke T. Brouwer & Kerstin Kuchta & Eggo U. Thoden van Velzen, 2021. "Factors Shaping the Recycling Systems for Plastic Packaging Waste—A Comparison between Austria, Germany and The Netherlands," Sustainability, MDPI, vol. 13(12), pages 1-17, June.
    9. Angelica Bianco & Monica Passananti, 2020. "Atmospheric Micro and Nanoplastics: An Enormous Microscopic Problem," Sustainability, MDPI, vol. 12(18), pages 1-17, September.
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