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Untangling the role of biotic and abiotic ageing of various environmental plastics toward the sorption of metals

The Science of The Total Environment 2023 17 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Luca Nizzetto Gilberto Binda, Luca Nizzetto Luca Nizzetto Gilberto Binda, Gilberto Binda, Gilberto Binda, Luca Nizzetto Gilberto Binda, Christian Vogelsang, Christian Vogelsang, Gilberto Binda, Luca Nizzetto Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Gilberto Binda, Margarida Costa, Davide Spanu, Gilberto Binda, Luca Nizzetto Luca Nizzetto Gilberto Binda, Gilberto Binda, Davide Spanu, Gilberto Binda, Luca Nizzetto Christian Vogelsang, Christian Vogelsang, Christian Vogelsang, Christian Vogelsang, Christian Vogelsang, Christian Vogelsang, Davide Spanu, Davide Spanu, Davide Spanu, Luka Šupraha, Margarida Costa, Margarida Costa, Margarida Costa, Davide Spanu, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Christian Vogelsang, Luca Nizzetto Davide Spanu, Davide Spanu, Davide Spanu, Christian Vogelsang, Luca Nizzetto Christian Vogelsang, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Eva Leu, Eva Leu, Christian Vogelsang, Christian Vogelsang, Christian Vogelsang, Eva Leu, Davide Spanu, Eva Leu, Davide Spanu, Luca Nizzetto Gilberto Binda, Luca Nizzetto Davide Spanu, Davide Spanu, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Davide Spanu, Luca Nizzetto Gilberto Binda, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luka Šupraha, Luka Šupraha, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Luca Nizzetto Christian Vogelsang, Christian Vogelsang, Luca Nizzetto Christian Vogelsang, Christian Vogelsang, Luca Nizzetto Luca Nizzetto Luca Nizzetto Luka Šupraha, Davide Spanu, Luca Nizzetto Christian Vogelsang, Christian Vogelsang, Luca Nizzetto Luca Nizzetto

Summary

Using factorial experiments, researchers disentangled the contributions of UV weathering, microbial biofilm colonization, and their interaction to metal sorption onto five types of environmental plastic, finding that both biotic and abiotic aging independently and synergistically enhance metal binding to plastic surfaces.

Plastic particles can impact the environmental fate and bioavailability of essential inorganic micronutrients and non-essential (toxic) metals. The sorption of metals to environmental plastic has been demonstrated to be facilitated by plastic ageing, a phenomenon encompassing an array of physical, chemical, and biological processes. This study deploys a factorial experiment to untangle the role of different ageing processes in determining the sorption of metals. Plastics made of three different polymer types were aged both through abiotic (ultraviolet irradiation, UV) and biotic (through the incubation with a multispecies algal inoculum forming a biofilm) processes under controlled laboratory conditions. Pristine and aged plastic samples were characterized for their physiochemical properties through Fourier-transformed infrared spectroscopy, scanning electron microscopy and water contact angle measurements. Their sorption affinity toward aluminum (Al) and copper (Cu) in aqueous solutions was then assessed as a response variable. All ageing processes (alone or combined) influenced plastic surface properties resulting in reduced hydrophobicity, changes in surface functional groups (i.e., increase of oxygen containing functional groups after UV ageing and the appearance of marked bands as amides and polysaccharides after biofouling), as well as in nanomorphology. The sorption of Al and Cu was instead statistically dependent (p < 0.01) on the degree of biofouling covering the specimens. Biofouled plastic displayed in fact substantial affinity for metal sorption causing the depletion of up to tenfold Cu and Al compared to pristine polymers, regardless of the polymer type and presence or absence of other ageing treatments. These results confirm the hypothesis that the accumulation of metals on plastic is substantially driven by the biofilm present on environmental plastics. These findings also highlight the importance of investigating the implications of environmental plastic for metal and inorganic nutrients availability in environments impacted by this pollution.

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