Management of municipal solid waste in Croatia: Analysis of current practices with performance benchmarking against other European Union member states

Author:

Traven Luka1,Kegalj Igor2ORCID,Šebelja Iva3

Affiliation:

1. Medical Faculty, University of Rijeka, Rijeka, Croatia

2. Faculty of Engineering, University of Rijeka, Croatia

3. Saipem S.p.A., Rijeka, Croatia

Abstract

The European Commission has adopted a very ambitious circular economy package and has consequently revised many legislative proposals on waste. The new targets include achieving a recycling rate of 65% by 2030 and imposing a cap on landfilled waste to no more than 10% (as a percentage of weight). Using available European and national databases on municipal solid waste indicators, we have analysed municipal solid waste production trends for Croatia and have benchmarked the indicators against other EU member states and EU averages. Our analysis points out that the production of municipal solid waste has steadily risen over the last two decades. Although Croatia produces a relatively low amount of municipal solid waste compared with other EU countries and EU averages, gross domestic product adjusted waste production reveals that for every euro of gross domestic product Croatia produces substantial amounts of municipal solid waste. As a matter of fact, among all the EU member states, only Bulgaria had a worse performance than Croatia. Regarding recycling rates, Croatia recycles 15% of its municipal solid waste and incinerates approximately 3% (by weight). The rest (82% by weight) is currently being landfilled. Regarding the treatment of waste, Croatia has implemented mechanical–biological treatment technology, but our analysis reveals that the initial number of mechanical–biological treatment plants will likely have to be scaled down taking into consideration the new EU waste management targets.

Publisher

SAGE Publications

Subject

Pollution,Environmental Engineering

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1. Bibliometric Aspects of Scientific Publications on the Circular Economy and Landfill;Revista de Gestão Social e Ambiental;2024-03-27

2. Mechanical Biological Treatment of Municipal Solid Waste;Advances in Solid and Hazardous Waste Management;2024

3. The potential for a combined heat and power (CHP) generation from municipal solid waste: A case study of Croatia;Case Studies in Chemical and Environmental Engineering;2023-12

4. Solid waste management: Case of the cities of Rabat, Sale, and Temara;Environmental Quality Management;2023-09-07

5. Circularity and Municipal Waste in Romania An Evaluation between 2011 and 2021;Proceedings of the International Conference on Business Excellence;2023-07-01

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