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Evaluation of sediment contamination by macro and microplastics in coastal waters of Southern Mediterranean: a case study of Annaba, Algeria, before and after the COVID-19 pandemic

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Plastic pollution in the hydrosphere ranks among the most pervasive environmental issues since the inception of the plastic industry and its widespread use in our daily lives. Nowadays, numerous countries worldwide suffer from this pollution not only along coastlines but also in deep-sea ecosystems. Our study carried out in the Gulf of Annaba aims to assess the prevalence and spatial distribution of plastic waste. Sampling was conducted at four coastal sites: El Battah, Seybousse, Rizzi Amor, and Ain Achir, both before and after the Covid-19 pandemic. The results reveal varying rates of macro and microplastic contamination, influenced by geographical differences, urban activities, and hydrodynamic factors. Moreover, the proportions of contamination depend on the types of waste. Furthermore, our study showed a clear divergence, particularly in two periods before and after the pandemic. Due to the lockdown, implemented in 2020, there was a marked decrease in the percentage of sediment plastic pollution, attributed to reduced human activity and partial cessation of industrial operations in these areas.
Rocznik
Strony
21--31
Opis fizyczny
Bibliogr. 32 poz., rys., tab., wykr.
Twórcy
  • Laboratory of Environmental Biosurveillance, Badji Mokhtar University, BP 12 Sidi Amar, Annaba 23000, Algeria
  • Laboratory of Environmental Biosurveillance, Badji Mokhtar University, BP 12 Sidi Amar, Annaba 23000, Algeria
autor
  • Laboratory of Environmental Biosurveillance, Badji Mokhtar University, BP 12 Sidi Amar, Annaba 23000, Algeria
autor
  • University Chadli Bendjedid, El Tarf 36000, Algeria
  • Laboratory of Environmental Biosurveillance, Badji Mokhtar University, BP 12 Sidi Amar, Annaba 23000, Algeria
Bibliografia
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  • 3. Barrett, J., Chase, Z., Zhang, J., Holl, M.M.B., Willis, K., Williams, A., Hardesty, B.D. & Wilcox, C. (2020). Microplastic Pollution in Deep-Sea Sediments from the Great Australian Bight. Frontiers in Marine Science, 7, 808. DOI:10.3389/fmars.2020.576170
  • 4. Baztan, J., Carrasco, A., Chouinard, O., Cleaud, M., Gabaldon, J.E., Huck, T., Jaffres, L., Jorgensen, B., Miguelez, A., Paillard, C. & Vanderlinden, J.P. (2014). Protected areas in the Atlantic facing the hazards of micro-plastic pollution: First diagnosis of three islands in the Canary Current. Mar. Pollut. Bull, 80, pp. 302-311. DOI:10.1016/j.marpolbul.2013.12.052
  • 5. Blair, R.M., Waldron, S., Phoenix, V.R. & Gauchotte-Lindsay, C. (2019). Microscopy and elemental analysis characterisation of microplastics in sediment of a freshwater urban river in Scotland, UK. Environmental Science and Pollution Research, 26, pp. 12491-12504. DOI:10.1007/s11356-019-04678-1
  • 6. Blumenroder, J., Sechet, P., Kakkonen, J.E. & Hartl, M.G.J. (2017). Microplastic contamination of intertidal sediments of Scapa Flow, Orkney: A first assessment. Mar. Pollut. Bull. 124,1, pp. 112-120. DOI:10.1016/j.marpolbul.2017.07.009
  • 7. Bordós, G., Urbányi, B., Micsinai, A., Kriszt, B., Palotai, Z., Szabó, I., Hantosi, Z. & Szoboszlay, S. (2019). Identification of microplastics in fish ponds and natural freshwater environments of the Carpathian basin, Europe. Chemosphere 216, pp. 110-116. DOI:10.1016/j.chemosphere.2018.10.110
  • 8. Chowdhury, H., Chowdhury, T. & Sait, S.M. (2021). Estimating marine plastic pollution from COVID-19 face masks in coastal regions. Mar Pollut Bull. 168, 112419. DOI:10.1016/j.marpolbul.2021.112419
  • 9. Cózar, A., Echevarría, F., González-Gordillo, J. I., Irigoien, X., Úbeda, B., Hernández-León, S., Palma, Á. T., Navarro, S., García-de-Lomas, J., Ruiz, A., Fernández-de-Puelles, M. L. & Duarte, C. M. (2015). Plastic debris in the open ocean. Proceedings of the National Academy of Sciences of the United States of America. 111, pp. 10239-10244. DOI:10.1073/pnas.1314705111
  • 10. Di, M., Liu, X., Wang, W. & Wang, J. (2019). Manuscript prepared for submission to environmental toxicology and pharmacology pollution in drinking water source areas: Microplastics in the Danjiangkou Reservoir, China. Environmental Toxicology and Pharmacology, 65, pp. 82–89. DOI:10.1016/j.etap.2018.12.009
  • 11. Frère, L., Paul-Pont, I., Rinnet, E., Petton, S., Jaffré, J., Bihannic, I., Soudant, P., Lambert, C. & Huvet, A. (2017). Influence of environmental and anthropogenic factors on the composition, concentration and spatial distribution of microplastics: A case study of the Bay of Brest (Brittany, France). Env. Pollut. pp. 211-222. DOI:10.1016/j.envpol.2017.03.023
  • 12. Galgani, F., Hanke, G., Werner, S., Oosterbaan, L., Nilsson, P., Fleet, D., Kinsey, S., Thompson, R. C., VanFraneker, J., Vlachogianni, T., Scoullos, M., Veiga, J.M., Palatinus, A., Matiddi, M., Maes, T., Korpinen, S., Budziak, A., Leslie, H., Gago, H. & Liebezeit, G. (2013). Guidance on monitoring of marine litter in European seas. EUR- Scientific and Technical Research series-ISSN 1831-9424 (online), Luxembourg Publications Office of the European Union, [eds.] Hanke G., Werner S., Galgani F., Veiga J.M. & Ferreira M. (ISBN: 978-92-79-32709-4). DOI:10.2788/99475
  • 13. Galgani, F., Mendoza, A., Osa, J.L., Basurko, O.C., Rubio, A., Santos, M., Gago, J. & Rodriguez, C.P. (2020). Microplastics in the Bay of Biscay: An overview. Mar. Polut. Bull.153, 110996. DOI:10.1016/j.marpolbul.2020.110996
  • 14. Global Carbon Project. (2020). Budget carbone [Document WWW]. Glob. Carbone Proj. URL https://www.globalcarbonproject.org/carbonbudget/index
  • 15. Graca, B., Szewc, K., Zakarzewska, D., Dolega, A. & Szczerbowska-Boruchowska, M. (2017). Sources and fate of microplastics in marine and beach sediments of the Southern Baltic Sea - a preliminary study. Environ. Sci. Pollut. Res.24(8), pp. 7650 - 7661. DOI:10.1007/s11356-017-8419-5
  • 16. Horton, A.A., Svendsen, C., Williams, R.J., Spurgeon, D.J. & Lahive, E. (2017a). Large microplastic particles in sediments of tributaries of the River Thames, UK – Abundance, sources and methods for effective quantification. Marine Pollution Bulletin, 114, pp. 218-226. DOI:10.1016/j.marpolbul.2016.09.004
  • 17. Hudson, A. (2020). L’effet COVID-19 sur nos océans. Head of Water and Ocean Governance Programme, UNDP. L’effet COVID-19 sur nos océans | Programme De Développement Des Nations Unies (undp.org)
  • 18. Imhof, H. K., Sigl, R., Brauer, E., Feyl, S., Giesemann, P., Klink, S., Leupolz, K., Loder, M. G., Loschel, L. A., Missun, J., Muszynski, S., Ramsperger, A. F., Schrank, I., Speck, S., Steibl, S., Trotter, B., Winter, I. & Laforsch, C. (2017). Spatial and temporal variation of macro-, meso- and microplastic abundance on a remote coral island of the Maldives, Indian Ocean. Mar. Pollut. Bull,15, 116(1-2), pp. 340-347. DOI:10.1016/j.marpolbul.2017.01.010.
  • 19. Klein, S., Worch, E. & Knepper, T.P. (2015). Occurrence and Spatial Distribution of Microplastics in River Shore Sediments of the Rhine-Main Area in Germany. Environ. Sci. Technol. 49, pp. 6070-6076. DOI:10.1021/acs.est.5b00492
  • 20. Lippiatt, S., Opfer, S. & Arthur, C. (2013). Marine Debris Monitoring and Assessment. NOAA Technical Memorandum NOS-OR&R-46. https://pub-data.diver.orr.noaa.gov/marine-debris/pacificislands/Lippiatt%20et%20al.%202013
  • 21. Okuku, E., Kiteresi, L., Owato, G., Otieno, K., Mwalugha, C., Mbuche, M., Gwada, B., Nelson, A., Chepkemboi, P., Achieng, Q., Wanjeri, V., Ndwiga, J., Mulupi, L. & Omire, J. (2021). The impacts of COVID-19 pandemic on marine litter pollution along the Kenyan Coast: A synthesis after 100 days following the first reported case in Kenya. Mar Pollut Bull. 162: 111840. https://pesquisa.bvsalud.org/global-literature-on-novel-coronavirus-2019-ncov/resource/en/covidwho-1065433#
  • 22. Ormaza-Gonzalez, F. & Castro-Rodas, D. (2020). COVID-19 Impacts on Beaches and Coastal Water Pollution: Management Proposals Post-pandemic. 2020, 2020060186. Preprints 2020060186. DOI:10.20944/PREPRINTS202006.0186.V1.
  • 23. Pedrotti, M. L., Petit, S., Elineau, A., Bruzaud, S., Crebassa, J. C., Dumontet, B., Marti, E., Gorsky, G. & Cozar, A. (2016). Changes in the Floating Plastic Pollution of the Mediterranean Sea in Relation to the Distance to Land. PLoS One. 1-14. DOI:10.1371%2Fjournal.pone.0161581
  • 24. Phuong, N.N., Fauvelle, V., Grenz, C., Ourgaud, M., Schmidt, N., Strady, E. & Sempéré, R. (2021). Highlights from a review of microplastics in marine sediments, Science of the Total Environment. DOI:10.1016/j.scitotenv.2021.146225
  • 25. The Economist, 2021. ttps://ocean.economist.com/?RefID=EM1707WS_Email_edm2
  • 26. Van Cauwenberghe, L., Devriese, L., Galgani, F., Robbens, J. & Janssen, C. R. (2015b). Microplastics in sediments: A review of techniques, occurrence and effects. Mar. Environ. Res. 5-17. DOI:10.1016/j.marenvres.2015.06.007
  • 27. Vandermeersch, G., Van Cauwenberghe, L., Janssen, C. R., Marques, A., Granby, K.Fait, G., Kotterman, M. J., Diogene, J., Bekaert, K., Robbens, J. & Devriese, L. (2015). A critical view on microplastic quantification in aquatic organisms. Environ. Res. pp. 46-55. DOI:10.1016/j.envres.2015.07.016
  • 28. Vermeiren, P., Muñoz, C. & Ikejima, K. (2020). Microplastic identification and quantification from organic rich sediments: A validated laboratory protocol. Environ. Pollut.114298. DOI:10.1016/j.envpol.2020.114298
  • 29. Waller, C.L., Griffiths, H.J., Waluda, C.M., Thorpe, S.E., Loaiza, I, Moreno, B., Pacherres, C.O. & Hughes, K.A. (2017). Microplastis in the Antarctic marine system: An emerging area of research. Mar. Pollut. Bull. pp. 220-227. DOI:10.1016/j.scitotenv.2017.03.283
  • 30. Yang, H., Sun, F., Liao, H., Guo, Y., Pan, T., Wu, F. & Giesy, J.P. (2023). Distribution, abundance, and risks posed by microplastics in surface waters of the Yangtze River Basin, China. Environmental Pollution. 333, 122086. DOI:10.1016/j.envpol.2023.122086
  • 31. Yuan, Q., Qi, B., Hu, D., Wang, J., Zhang, J., Yang, H., Zhang, S., Liu, L., Xu, L. & Li, W. (2020). Spatiotemporal variations and reduction of air pollutants during the COVID- 19 pandemic in a megacity of Yangtze River Delta in China. Sci. Total Environ. 751. DOI:10.1016%2Fj.scitotenv.2020.141820
  • 32. Zambrano-Monserrate, M.A., Ruano, M.A. & Sanchez-Alcalde, L. (2020). Indirect effects of COVID-19 on the environment. Sci. Total Environ. 138813. DOI:10.1016/j.scitotenv.2020.138813.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-75e1dd0a-e973-4d71-a467-89e50c414f6a
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