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Release of Microplastics from Reusable Kitchen Plasticware and Generation of Thermal Potential Toxic Degradation Products in the Oven

Applied Sciences 2022 17 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Juri Jander, Darius Hummel, Sophie Stürmer, Adrian Monteleone, Tizian Neumaier, Felix Broghammer, Uta Lewin-Kretzschmar, Thomas D. Brock, Martin Knöll, Andreas Fath, Andreas Fath

Summary

Kitchen plasticware including containers and baking molds was tested for microplastic release during oven use, finding that heating generated both microplastic particles and potentially toxic thermal degradation products at levels dependent on material type and temperature. The results identify reusable kitchen plastics as an underappreciated source of microplastic and chemical exposure during everyday cooking.

Plastics are one of the most important technical materials at present, yet they are associated with a whole series of environmental problems such as micro-and nanoplastics or their plasticizers, which have become increasingly relevant in recent years. While there are many studies that focus on microplastics (MPs) introduced into the human body through commercially produced food, there are nearly none that consider the MPs we ingest through homemade food made with plastic kitchen utensils such as mixing bowls. To investigate this, samples were obtained by exposing different plastic bowls made of acrylonitrile–butadiene–styrene (ABS), polypropylene (PP), melamine, polyethylene (PE), polystyrene (PS), and styrene–acrylonitrile (SAN), to mechanical stress and then analyzed via infrared spectroscopy. This not only raises the question of whether microplastics are incorporated into foods but also the extent to which the degradation products produced by thermal stress in an oven could play a toxicological role. Degradation products were generated by pyrolysis and analyzed afterwards using gas chromatography mass spectrometry. There were differences in the number of microplastic particles abraded by the different types of plastic, with the most consisting of melamine (898 particles) and the least consisting of low-density polyethylene (331 particles). There were also differences in the number and relevance of the thermal degradation products for the different plastics, so that a human toxicological assessment would have to be evaluated in further work.

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