Microplastic abundance and characteristics in seawater and inter-tidal sediments of the Tokin Bay Coast (North Vietnam)

Author:

Phuong Ngoc Nam1,Duong Thi Thuy2,Pham Quoc Tuan1,Ngo Thi Xuan Thinh1,Nguyen Thi Minh Diep1,Le Thi Phuong Quynh2,Duong Thanh Nghi2,Dhivert Elie3,Zalouk-Vergnoux Aurore4,Poirier Laurence4,Gasperi Johnny5,Phuong Ngoc Anh6

Affiliation:

1. PhuTho College of Medicine and Pharmacy

2. Vietnam Academy of Science and Technology

3. University of Tours

4. Nantes Université, Institut des Substances et Organismes de la Mer

5. GERS-LEE Université Gustave Eiffel, IFSTTAR

6. Vietnam National Lung Hospital

Abstract

Abstract Microplastics (MPs, plastic items from 1 µm to 5 mm in size) are present in all the environmental compartments. The evaluation of their concentration, fate, and spatial distribution is still a challenge for the scientific community. This concern is just debuting in developing countries, i.e. Asia, South America and Africa. This study deals with the MP contamination in the abiotic marine compartments of the Northern of Vietnam: seawater and intertidal sediments. Four sites located in the intertidal zone or near the coastline in the Tonkin bay, Vietnam were studied. A total of 16 samples (8 for each compartment) were collected in July 2020 (rainy season) and January 2021 (dry season). Plastic-like items were found at levels ranging from 3 to 303 items/m3 in seawater and from 63 to 955 items/kg dry weight in sediments. Most of these were fibers less than 300 µm long. Higher levels in seawater were found in the rainy season compared to the drier one. As the river flow was estimated six times higher during the rainy season than during the dry season, these results suggest the river discharge as a potential source of contamination for coastal zone. The temporal variability was lower for the sediments than for the seawater, demonstrating the long-term integration of the plastic-like items in this compartment. While the nature of fibers wasn’t investigated, the plastic-like fragments were analyzed on µFTIR imaging spectrometer. The determination of polymer composition indicated that most of the fragments were made of polypropylene (PP, 82%), followed by polyethylene (PE, 9%) and polystyrene (PS, 9%). The fragment size was similar in two studied compartments but it was depending on polymer types, since PS fragments (140 ± 17 µm) were smaller than those made of PE (622 ± 123 µm) and PP (869 ± 905 µm).

Publisher

Research Square Platform LLC

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