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The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches

[Image: see text] In May 2021, the M/V X-Press Pearl cargo ship caught fire 18 km off the west coast of Sri Lanka and spilled ∼1680 tons of spherical pieces of plastic or “nurdles” (∼5 mm; white in color). Nurdles are the preproduction plastic used to manufacture a wide range of end products. Exposu...

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Autores principales: de Vos, Asha, Aluwihare, Lihini, Youngs, Sarah, DiBenedetto, Michelle H., Ward, Collin P., Michel, Anna P. M., Colson, Beckett C., Mazzotta, Michael G., Walsh, Anna N., Nelson, Robert K., Reddy, Christopher M., James, Bryan D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10114858/
https://www.ncbi.nlm.nih.gov/pubmed/37101587
http://dx.doi.org/10.1021/acsenvironau.1c00031
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author de Vos, Asha
Aluwihare, Lihini
Youngs, Sarah
DiBenedetto, Michelle H.
Ward, Collin P.
Michel, Anna P. M.
Colson, Beckett C.
Mazzotta, Michael G.
Walsh, Anna N.
Nelson, Robert K.
Reddy, Christopher M.
James, Bryan D.
author_facet de Vos, Asha
Aluwihare, Lihini
Youngs, Sarah
DiBenedetto, Michelle H.
Ward, Collin P.
Michel, Anna P. M.
Colson, Beckett C.
Mazzotta, Michael G.
Walsh, Anna N.
Nelson, Robert K.
Reddy, Christopher M.
James, Bryan D.
author_sort de Vos, Asha
collection PubMed
description [Image: see text] In May 2021, the M/V X-Press Pearl cargo ship caught fire 18 km off the west coast of Sri Lanka and spilled ∼1680 tons of spherical pieces of plastic or “nurdles” (∼5 mm; white in color). Nurdles are the preproduction plastic used to manufacture a wide range of end products. Exposure to combustion, heat, and chemicals led to agglomeration, fragmentation, charring, and chemical modification of the plastic, creating an unprecedented complex spill of visibly burnt plastic and unburnt nurdles. These pieces span a continuum of colors, shapes, sizes, and densities with high variability that could impact cleanup efforts, alter transport in the ocean, and potentially affect wildlife. Visibly burnt plastic was 3-fold more chemically complex than visibly unburnt nurdles. This added chemical complexity included combustion-derived polycyclic aromatic hydrocarbons. A portion of the burnt material contained petroleum-derived biomarkers, indicating that it encountered some fossil-fuel products during the spill. The findings of this research highlight the added complexity caused by the fire and subsequent burning of plastic for cleanup operations, monitoring, and damage assessment and provides recommendations to further understand and combat the impacts of this and future spills.
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spelling pubmed-101148582023-04-25 The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches de Vos, Asha Aluwihare, Lihini Youngs, Sarah DiBenedetto, Michelle H. Ward, Collin P. Michel, Anna P. M. Colson, Beckett C. Mazzotta, Michael G. Walsh, Anna N. Nelson, Robert K. Reddy, Christopher M. James, Bryan D. ACS Environ Au [Image: see text] In May 2021, the M/V X-Press Pearl cargo ship caught fire 18 km off the west coast of Sri Lanka and spilled ∼1680 tons of spherical pieces of plastic or “nurdles” (∼5 mm; white in color). Nurdles are the preproduction plastic used to manufacture a wide range of end products. Exposure to combustion, heat, and chemicals led to agglomeration, fragmentation, charring, and chemical modification of the plastic, creating an unprecedented complex spill of visibly burnt plastic and unburnt nurdles. These pieces span a continuum of colors, shapes, sizes, and densities with high variability that could impact cleanup efforts, alter transport in the ocean, and potentially affect wildlife. Visibly burnt plastic was 3-fold more chemically complex than visibly unburnt nurdles. This added chemical complexity included combustion-derived polycyclic aromatic hydrocarbons. A portion of the burnt material contained petroleum-derived biomarkers, indicating that it encountered some fossil-fuel products during the spill. The findings of this research highlight the added complexity caused by the fire and subsequent burning of plastic for cleanup operations, monitoring, and damage assessment and provides recommendations to further understand and combat the impacts of this and future spills. American Chemical Society 2021-11-29 /pmc/articles/PMC10114858/ /pubmed/37101587 http://dx.doi.org/10.1021/acsenvironau.1c00031 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle de Vos, Asha
Aluwihare, Lihini
Youngs, Sarah
DiBenedetto, Michelle H.
Ward, Collin P.
Michel, Anna P. M.
Colson, Beckett C.
Mazzotta, Michael G.
Walsh, Anna N.
Nelson, Robert K.
Reddy, Christopher M.
James, Bryan D.
The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title_full The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title_fullStr The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title_full_unstemmed The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title_short The M/V X-Press Pearl Nurdle Spill: Contamination of Burnt Plastic and Unburnt Nurdles along Sri Lanka’s Beaches
title_sort m/v x-press pearl nurdle spill: contamination of burnt plastic and unburnt nurdles along sri lanka’s beaches
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10114858/
https://www.ncbi.nlm.nih.gov/pubmed/37101587
http://dx.doi.org/10.1021/acsenvironau.1c00031
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