An Experimental Approach to Determining the Average Diffusion Coefficient of Volatile Components in Polymer Waste Materials

Author:

Chung Chi Nghia12,Marschik Christian1ORCID,Klimosek Jakub3,Kosek Juraj3ORCID,Akhras Mohamad Hassan1ORCID,Steinbichler Georg2

Affiliation:

1. Competence Center CHASE, Hafenstraße 47-51, A-4020 Linz, Austria

2. Institute of Injection Molding and Process Automation, Johannes Kepler University Linz, Altenberger Straße 69, A-4040 Linz, Austria

3. Department of Chemical Engineering, University of Chemistry and Technology, Technicka 5, 16628 Prague, Czech Republic

Abstract

One of the major challenges in recycling plastics is the removal of undesired volatile components from the polymeric phase, which may reduce process efficiency and negatively affect product quality. Accordingly, the recycling industry employs a broad range of degassing techniques, the efficiency of which often depends on the diffusion coefficient—a measure of the mass transport of volatile components in polymeric phases. The aim of this study was to develop a practically feasible experimental approach using thermogravimetric analysis (TGA) to determine the average diffusion coefficient of volatile components in polymer waste materials. First, the TGA method was validated with a pressure decay apparatus (PDA) using predefined binary material mixtures: Thin sheets were pressed from virgin high-density polyethylene (HDPE) and polypropylene (PP) and deliberately saturated with toluene in a sorption experiment. These saturated samples were then used in TGA and PDA desorption experiments at 60 °C, 80 °C and 100 °C, which yielded similar results with an average difference of 7.4% for the HDPE-toluene system and 14.7% for the PP-toluene system. When validated, TGA was employed to determine the diffusion coefficient of volatile components in post-industrial plastic waste melt at a temperature of 220 °C. The proposed method contributes to the understanding of diffusion-based mass transport in polymer waste materials and provides a key parameter for model-based process control and optimization. In practice, the diffusion coefficient results can be used to predict the degassing performance of an extrusion process in the mechanical recycling of plastic waste.

Funder

COMET Centre CHASE

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal,General Materials Science

Reference34 articles.

1. Plastics Europe (2022). Plastics—The Facts 2022, Plastics Europe AISBL.

2. European Parliament (2018). Directive 2008/98/EC on Waste and Repealing Certain Directives, European Union.

3. Badini, C., Ostrovskaya, O., Bernagozzi, G., Lanfranco, R., and Miranda, S. (2023). Recycling of Polypropylene Recovered from a Composting Plant: Mechanical Behavior of Compounds with Virgin Plastic. Recycling, 8.

4. Open Access Government (2023, March 25). EU Green Deal: Creating a Circular Economy for Plastics. Available online: https://www.openaccessgovernment.org/circular-economy-for-plastics/97160/.

5. European Commission (2021). Fit for 55: Delivering the EU’s 2030 Climate Target on the Way to Climate Neutrality, European Commission.

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