Journal
JOURNAL OF MARINE SCIENCE AND ENGINEERING
Volume 11, Issue 1, Pages -Publisher
MDPI
DOI: 10.3390/jmse11010210
Keywords
microplastic pollution; different types of microplastics; FT-IR; visual analysis
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Plastic pollution is a recognized threat to marine ecosystems, and many studies aim to estimate the level of plastic and microplastics pollution in the World Ocean. However, the use of different methods for sampling and analyzing microplastics leads to difficulties in comparing the results. Surface and subsurface microplastics differ not only in size, but also in morphology, polymer types, abundance, weight concentration, and spatial distribution. This study investigates the distribution of surface and subsurface microplastics in the Central Atlantic and how oceanographic conditions influence their spatial distribution.
Plastic is recognized as a threat to marine ecosystems, and estimating the level of plastic and microplastics (MPs) pollution of the World Ocean is, nowadays, the goal of many studies. However, the use of different methods for the sampling and analysis of MPs leads to the problem of comparing the results obtained. Studies on surface MPs pollution of the surface sea water are based on the application of the manta or neuston nets that collect water from the upper 10-20 cm layer (the surface MPs) or submersible pumping systems that collect water from the water layer 3 to 5 m below the sea surface (the subsurface MPs). These two techniques allow the collection of particles of different size fractions, i.e., >300 mu m for the surface MPs and >100 mu m for the subsurface MP. However, it is shown that microplastics found in the surface and subsurface layers differ not only in the size of the items found, but also in morphology, types of polymers, abundance, weight concentration and their spatial distribution. Different hydrodynamic processes affect the fate of the plastic found exactly at the sea surface and several meters deeper. The aim of this work was to study the distribution of surface and subsurface MPs and to reveal an influence of oceanographic conditions on their spatial distribution, using as an example the open ocean waters of the Central Atlantic.
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