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Modelling the Slovenian Wood Industry’s Response to the Greenhouse Gas Paris Agreement and the EU “Fit for 55” Green Transition Plan

Author

Listed:
  • Erwin M. Schau

    (InnoRenew CoE, Livade 6a, SI-6310 Izola-Isola, Slovenia)

  • Igor Gavrić

    (Element5 Limited Partnership, 67 Mowat Ave #114, Toronto, ON M6K 3E3, Canada)

  • Iztok Šušteršič

    (Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Titov Trg 4, SI-6000 Koper, Slovenia
    Modular Timber d.o.o., Avčinova ulica 9, SI-1000 Ljubljana, Slovenia)

  • Eva Prelovšek Niemelä

    (InnoRenew CoE, Livade 6a, SI-6310 Izola-Isola, Slovenia)

  • Balázs Dávid

    (InnoRenew CoE, Livade 6a, SI-6310 Izola-Isola, Slovenia
    Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Titov Trg 4, SI-6000 Koper, Slovenia)

  • Jaka Gašper Pečnik

    (InnoRenew CoE, Livade 6a, SI-6310 Izola-Isola, Slovenia
    Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Titov Trg 4, SI-6000 Koper, Slovenia)

  • David B. DeVallance

    (College of Science and Technology, Commonwealth University of Pennsylvania, 401 North Fairview Street, Lock Haven, PA 17745, USA)

  • Črtomir Tavzes

    (InnoRenew CoE, Livade 6a, SI-6310 Izola-Isola, Slovenia
    Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Titov Trg 4, SI-6000 Koper, Slovenia
    Institute for the Protection of Cultural Heritage of Slovenia, Poljanska Cesta 40, SI-1000 Ljubljana, Slovenia)

Abstract

Almost 200 nations, including the European Union, have signed the Paris Agreement that aims to limit the temperature rise to 1.5 °C above pre-industrial levels by reducing greenhouse gas (GHG) emissions. To meet this target, a significant decrease in GHG emissions by 2030 and net zero by 2050 is necessary. To determine the role of wood products in achieving a 55% reduction in GHG emissions by 2030 compared with 1990 levels, we investigated Slovenia’s potential, which has close to 60% forested areas. Therefore, the country could use wood-based products to achieve the agreed-upon climate goals. Nevertheless, uncertainties remain regarding the extent to which increased tree harvesting, local manufacturing, and the utilization of wood products can aid in substituting fossil-derived materials and reducing GHG emissions. A new model was constructed to increase the understanding of the wood products’ (throughout the forest-based industrial ecosystem, incl. construction) potential contribution to reaching the stated emissions targets. Using this linear programming (LP) mathematical optimisation model and carbon footprint calculations based on life cycle assessment methods, a wood flow distribution, the financial investment needed to process these quantities, and the GHG emissions produced and/or saved were calculated. The findings stipulated that Slovenia has the potential to achieve 55 % less GHG emissions by 2030 by expanding logging to at least 3 million m 3 and converting the timber to a larger amount of long service-life wooden items made (and utilised) within the country. Such products accumulate carbon for a long time and decrease the need for materials that cause higher GHG emissions. Concomitantly, a better appreciation of the substitution effects in official carbon accounting would be needed. Moreover, to materialize the potential decrease in emissions would require Slovenia’s construction sector to replace fossil- and mineral-based materials with lignocellulosic products, and to increase the capacity to utilize lower-quality wood in high added value applications, which would require significant investment. This paper offers a comprehensive analysis of diverse optimisation outcomes obtained from the investigation into climate action through the use of wood products in Slovenia.

Suggested Citation

  • Erwin M. Schau & Igor Gavrić & Iztok Šušteršič & Eva Prelovšek Niemelä & Balázs Dávid & Jaka Gašper Pečnik & David B. DeVallance & Črtomir Tavzes, 2023. "Modelling the Slovenian Wood Industry’s Response to the Greenhouse Gas Paris Agreement and the EU “Fit for 55” Green Transition Plan," Sustainability, MDPI, vol. 15(10), pages 1-24, May.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:10:p:8376-:d:1152490
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    References listed on IDEAS

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    1. Eun-Kyung Jang & Yeo-Chang Youn, 2021. "Effects of Wood Product Utilization on Climate Change Mitigation in South Korea," Sustainability, MDPI, vol. 13(12), pages 1-16, June.
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    Cited by:

    1. Zhongwei Zhu & Tingyu Qian & Lei Liu, 2023. "Evolutionary Simulation of Carbon-Neutral Behavior of Urban Citizens in a “Follow–Drive” Perspective," Sustainability, MDPI, vol. 15(13), pages 1-28, July.

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