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Sustainable production and consumption

Author(s)
Papamichael I.
Voukkali I.
Stylianou, Marinos  
Naddeo V.
Ksibi M.
Zarra T.
Zorpas, Antonis  
Association of Committees of Municipalities on Attica Regions and the Department of the Solid Waste Management (ΕΣΔΚΝΑ), BIOCHROM Industry (Paint industry), ENVITECH (Environmental Technology) Ltd, European Commission, Expert Evaluator, FAMAR (Medicine and Cosmetics Industry), LOREAL (Cosmetic Industry), Miguel Hernandez University, National Institute of Geological and Mineral Research, National Technical University of Athens, Open University of Cyprus, Psittalias Wastewater Treatment, Sewage Treatment Plant (Waste Water Treatment Plant in Municipality of Paralimni – Agia Napa, Tasty Foods Industries (PEPSICO GROUP), University of Cyprus, University of the Aegean
ISSN
23656433
Date Issued
2024
DOI
10.1007/s41207-024-00594-0
Faculty
Σχολή Θετικών και Εφαρμοσμένων Επιστημών / Faculty of Pure and Applied Sciences  
Abstract
The challenges of balancing environmental sustainability with economic and social growth are intensifying, with unsustainable consumption and production patterns posing significant risks on a global scale (i.e., resource scarcity, raw material consumption, waste production etc.). Projections indicate a sharp increase in municipal solid waste and associated costs by 2050 while combating all implications of this increase becomes more and more vital. To address these challenges, the European Green Deal and the Sustainable Development Goals (SDGs) of the United Nations, particularly SDG 12, emphasize the necessity of sustainable production and consumption of all products, raw materials, energy, water etc. This involves adopting a circular economy model, which transforms waste into resources, conserving natural resources, and enhancing environmental performance. Key strategies include broader implementation of R strategies (reduce, reuse, recycle, remanufacture, refurbish), producer responsibility, and advanced monitoring tools like Life Cycle Assessment (LCA) and Material Flow Analysis (MFA). Additionally, sustainable energy systems and innovative digital technologies (i.e. artificial intelligence, Internet of Things, blockchain etc.) and the holistic utilization of Industry 5.0 play a crucial role. Public education and awareness are essential for fostering sustainable behaviors and consumption patterns coupled with effective policy, governance and the building of trust between the public and decision makers. At the same time, collaborative efforts from governments, industries, and communities are imperative for transitioning to a sustainable and circular economy, ensuring a resilient and equitable future.
Publisher
Springer Nature
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