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Comparative Analysis of the Behaviour of Marine Litter in Thermochemical Waste Treatment Processes

Processes 2020 11 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Johann Hee, Kai Ulrich Schlögel, Simone Lechthaler, Jacqueline Plaster, Kristina Bitter, Lars M. Blank, Peter Quicker

Summary

This study is the first to analyze what happens when marine plastic litter is subjected to thermochemical recycling processes like pyrolysis and gasification. Understanding the composition and behavior of marine litter in these processes is key to enabling recycling of collected ocean plastic.

Study Type Environmental

Plastic in the ocean, especially plastic on the ocean surface is not only researched intensively but also photos and reports rise awareness of the challenge in the general public. While research is concerned with the fate of marine litter in the environment, recycling of these materials after collection is rarely addressed, mainly because there is neither considerable data on composition nor a suggested process to do so. This study is the first to analyse and evaluate chemical recycling (pyrolysis, gasification) and energy recovery (incineration) of marine litter. Two heterogenous marine litter samples from Sylt and Norderney, North Sea, Germany, were analysed, consisting of six different material groups. Agricultural mulch foil was used as reference material. The thermochemical treatment processes were reproduced by thermogravimetric analysis. Furthermore, pyrolysis trials on a semi-technical scale were conducted and the residues were analysed by proximate, ultimate and X-ray fluorescence analysis. The results indicate that heterogeneous and weathered material mixtures can be treated by thermochemical processes. Finally, the pyrolysis condensates are discussed as substrate for biotechnological upcycling. In summary, we present a comprehensive approach from the material characterisation of marine litter to the analysis of three different thermochemical treatment processes and the possibility to use the generated pyrolysis condensate for subsequent upcycling. The data collected form the basis for the evaluation and application of possible treatment options for the collected marine litter.

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