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Microplastics in Atlantic Ribbed Mussels (Geukensia demissa) from the Delaware Inland Bays, USA

Title: Microplastics in Atlantic Ribbed Mussels (Geukensia demissa) from the Delaware Inland Bays, USA
Authors: Ashley, Jeffrey; Pilat, Amanda; Ohlweiler, Ariana; Ogden, Connor; Modi, Priya; Talbot, Spencer; Smith, Caya; O'Pella, Justin; Ozbay, Gulnihal
Source: Student Papers, Posters & Projects
Publisher Information: Jefferson Digital Commons
Publication Year: 2024
Collection: Jefferson Digital Commons (Thomas Jefferson University, Philadelphia)
Subject Terms: microplastics; bivalves; Geukensia demissa; biomonitoring; Atlantic ribbed mussel; microfibers; Environmental Health; Life Sciences; Terrestrial and Aquatic Ecology
Description: Due to the prevalence of plastic pollution in coastal ecosystems, aquatic organisms are at high risk for accumulating microplastics (MPs). Filter-feeding bivalves, such as mussels and oysters, may be exposed to, and subsequently accumulate, MPs due to the high volume of water they pass through their bodies. This study assessed the levels of MPs within Atlantic ribbed mussels (Geukensia demissa), a common filter feeder found along the United States Atlantic Coast, from 12 sites within Rehoboth Bay, Indian River Bay, and Little Assawoman Bay, collectively known as the Delaware Inland Bays. Composited mussels from each site were digested using potassium hydroxide and filtered. Microplastics were physically identified, sorted based on color, and counted using a digital microscope. Microplastics, almost entirely dominated by synthetic microfibers, were found in all mussels well above laboratory blanks. Across all sites, 40% of microfibers were black, and 27% of fibers were clear. The composite concentrations of MPs ranged from 0.25 to 2.06 particles/g wet tissue, with a mean of 0.08 ± 0.06. In general, higher concentrations were found in mussels collected at sites that were adjacent to more urbanized land use versus those from rural sites. At two sites, individual mussels, in addition to composites, were analyzed and had MP concentrations ranging from 11 to 69 particles/mussel. This study represents the first evaluation of MPs in this ecologically important coastal species and suggests its viability as a biomonitoring species for microplastic pollution.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: https://jdc.jefferson.edu/student_papers/153; https://jdc.jefferson.edu/context/student_papers/article/1154/viewcontent/microplastics_03_00009_v2.pdf
Availability: https://jdc.jefferson.edu/student_papers/153; https://jdc.jefferson.edu/context/student_papers/article/1154/viewcontent/microplastics_03_00009_v2.pdf
Rights: http://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.B653C1B0
Database: BASE