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Small microplastic ingestion by the calanoid Centropages furcatus in the Gulf of Thailand

The Science of The Total Environment 2024 5 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
María Belén Alfonso, María Belén Alfonso, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Suppakarn Jandang María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Voranop Viyakarn, Atsuhiko Isobe, Atsuhiko Isobe, Suchana Chavanich, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, Haruka Nakano, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, María Belén Alfonso, Haruka Nakano, Haruka Nakano, Suchana Chavanich, Haruka Nakano, María Belén Alfonso, Atsuhiko Isobe, Suppakarn Jandang Suchana Chavanich, Voranop Viyakarn, Suppakarn Jandang Haruka Nakano, Atsuhiko Isobe, Voranop Viyakarn, Haruka Nakano, Voranop Viyakarn, Suppakarn Jandang Voranop Viyakarn, María Belén Alfonso, Haruka Nakano, Suppakarn Jandang María Belén Alfonso, Haruka Nakano, María Belén Alfonso, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Mie Tanaka, Mie Tanaka, Suchana Chavanich, Suchana Chavanich, Atsuhiko Isobe, Suppakarn Jandang María Belén Alfonso, Suchana Chavanich, Suchana Chavanich, Haruka Nakano, Haruka Nakano, Mie Tanaka, Haruka Nakano, Mie Tanaka, Atsuhiko Isobe, Haruka Nakano, Voranop Viyakarn, Haruka Nakano, Haruka Nakano, Atsuhiko Isobe, Suchana Chavanich, Suchana Chavanich, Suppakarn Jandang Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Voranop Viyakarn, Suchana Chavanich, Suchana Chavanich, Suchana Chavanich, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Voranop Viyakarn, Voranop Viyakarn, Atsuhiko Isobe, Atsuhiko Isobe, Suchana Chavanich, Voranop Viyakarn, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Voranop Viyakarn, Suppakarn Jandang Atsuhiko Isobe, Suchana Chavanich, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Atsuhiko Isobe, Haruka Nakano, Atsuhiko Isobe, Atsuhiko Isobe, Voranop Viyakarn, Atsuhiko Isobe, Suppakarn Jandang

Summary

Researchers analyzed small microplastics ingested by the copepod Centropages furcatus in the Gulf of Thailand and found plastic particles in every sample examined. The average ingestion rate was among the highest recorded for this type of zooplankton, with polypropylene fragments smaller than 50 micrometers being the most common. The findings suggest that these tiny organisms could transfer significant amounts of microplastics up through the marine food chain.

Microplastics could be ingested by many organisms, including zooplankton, involving bioaccumulation and biomagnification mechanisms a cross food webs. The information about microplastic ingestion by zooplankton keeps increasing worldwide. However, it is still limited for particle sizes under 300 μm (small microplastics, SMPs) and in areas such as Southeast Asia, which is considered one of the hotspots for plastic debris. This study aimed to characterize the size, shape, and polymer types of the SMPs ingested by the copepod Centropages furcatus in Si Chang Island (upper Gulf of Thailand). The study spans offshore and coastal waters, with data collected across wet, intermediate, and dry seasons. Using a semi-automated technique for micro-FTIR (Fourier-transform infrared) scanning spectroscopy for particle analysis, we found ingested SMPs in all samples. A total of 750 individuals of the calanoid Centropages furcatus were analyzed, finding 309 plastic particles and an average ingestion value of 0.41 ± 0.13 particles ind<sup>-1</sup>, one of the highest recorded values. All the particles were fragments, with a predominant size under 50 μm, and polymer types as Polypropylene (PP, 71 %), followed by Ethylene-Propylene-Diene-Monomer (EPDM, 16 %) and Polyethylene (PE, 7 %). Up to 470.2 particles m<sup>-3</sup> were estimated to be retained by this calanoid species and potentially available for trophic transfer. The effect of rainfall on SMPs ingestion was inconclusive, with a non-significant observed tendency to higher ingestion values near the coastal area than offshore area, suggesting a decrease in particle exposure due to the runoff effect. Nevertheless, future studies should increase the frequency of surveys to arrive at better conclusions.

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