AI Article Synopsis

  • Fish meal (FM) is a high-protein feed made from whole wild-caught fish, but it is increasingly contaminated by microplastics (MPs) due to small marine animals consuming these plastics, which then enter the food chain.
  • A new procedure has been developed to quantify the types and amounts of microplastic contamination in FM, including polyolefins, polystyrene, and polyethylene terephthalate (PET), involving multiple steps like solvent extractions and hydrolysis.
  • Current techniques estimate low concentrations of polyolefins and polystyrene in FM, while PET contamination can be accurately measured at 12.9 mg/kg, and possible improvements for better quantification of the other plastics using advanced methods are suggested.

Article Abstract

Fish meal (FM) is an industrial product, mainly obtained from whole wild-caught fish, that is used as a high protein feedstuff component in aquaculture and intensive animal farming. Contamination of FM by microplastics (MPs), the synthetic polymer particles known to be nearly ubiquitous in the marine environment, is a likely consequence of their ingestion by zooplankton and other small marine animals that through the food chain end up in the fish commercialized not only for direct human consumption but also for the industrial production of FM. Unfortunately, analytical tools for quantifying contamination of FM by synthetic polymers are not available. A newly developed procedure described here allows quantification of the total amounts of polyolefins (including ethene and propene homo- and copolymers), polystyrene (PS), and poly(ethylene terephthalate) (PET), respectively, in FM. The multi-step procedure involves a sequence of solvent extractions, hydrolytic treatments to remove the biogenic matrix mainly consisting of proteins and some lipids, and selective depolymerization for PET. The gravimetric and SEC-UV techniques employed for the quantification of polyolefins and PS, respectively, only allowed to estimate their concentration in FM at around or below 100 mg/kg each, a more accurate quantification being prevented by the interference from the organic matrix and, in the case of polyolefins, by the limited sensitivity of the quantification by gravimetry. On the other hand, the contamination by PET MPs could accurately be quantified at 12.9 mg/kg based on the dry FM mass. Ways to overcome the sensitivity limitations for PS and polyolefins by using e.g. pyrolysis-GC/MS are highlighted.

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Source
http://dx.doi.org/10.1016/j.envpol.2020.115792DOI Listing

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