Feasibility Study for Finding Mathematical Approaches to Describe the Optimal Operation Point of Sensor-Based Sorting Machines for Plastic Waste

Author:

Friedrich Karl1ORCID,Kuhn Nikolai2ORCID,Pomberger Roland2,Koinig Gerald2ORCID

Affiliation:

1. Mineral Processing, Department of Mineral Resources Engineering, Montanuniversitaet Leoben, Franz Josef-Strasse 18, 8700 Leoben, Austria

2. Waste Processing Technology and Waste Management, Department of Environmental and Energy Process Engineering, Montanuniversitaet Leoben, Franz Josef-Strasse 18, 8700 Leoben, Austria

Abstract

At present, sensor-based sorting machines are usually not operated at the optimal operation point but are either overrun or underrun depending on the availability of waste streams. Mathematical approaches for predefined ideal mixtures can be found based on the input stream composition and the throughput rate. This scientific article compares whether and under what conditions these approaches can be applied to sensor-based sorting machines. Existing data for predefined ideal mixtures are compared with newly generated data of real waste on three sensor-based sorting setups in order to make significant statements. Five samples of 3D plastics at regular intervals were taken in a processing plant for refuse-derived fuels. With the comparison of all these results, four hypotheses were validated, related to whether the same mathematical approaches can be transferred from ideal mixtures to real waste and whether they can be transferred to sensor-based sorting machines individually or depending on the construction type. The developed mathematical approaches are regression models for finding the optimal operation point to achieve a specific sensor-based sorting result in terms of purity and recovery. For a plant operator, the main benefit of the findings of this scientific article is that purity could be increased by 20% without substantially adapting the sorting plant.

Funder

Austrian Research Promotion Agency

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference19 articles.

1. European Union (2008). Directive 2008/98/EC of the European Parliament and of the Council of 19 November 2008 on Waste and Repealing Certain Directives. Waste Framework Directive 2008, European Parliament and the Council.

2. Eurostat (2023, October 05). Packaging Waste Statistics. Statistics Explained. Available online: https://ec.europa.eu/eurostat/statistics-explained/index.php?title=Packaging_waste_statistics.

3. A review on automated sorting of source separated municipal solid waste for recycling;Gundupalli;Waste Manag.,2017

4. Influence of material alterations machine impairment on throughput related sensor-based sorting performance;Friedrich;Waste Manag. Res.,2021

5. Workman, J., and Springsteen, A.W. (1998). Applied Spectroscopy: A Compact Reference for Practitioners, Academic Press.

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