Microplastics in the Marine Environment: A Review of the Methods Used for Identification and Quantification
Микропластик в морской среде: обзор методов идентификации и количественной оценки
2012-02-09
SCID: 54.1/34t8tr92
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infrared spectroscopymarine microplasticsmicroplastic identificationmicroplastic quantificationstandardized sampling procedures
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Abstract (AI)
This review of 68 studies compares the methodologies used for the identification and quantification of microplastics from the marine environment. Three main sampling strategies were identified: selective, volume-reduced, and bulk sampling. Most sediment samples came from sandy beaches at the high tide line, and most seawater samples were taken at the sea surface using neuston nets. Four steps were distinguished during sample processing: density separation, filtration, sieving, and visual sorting of microplastics. Visual sorting was one of the most commonly used methods for the identification of microplastics (using type, shape, degradation stage, and color as criteria). Chemical and physical characteristics (e.g., specific density) were also used. The most reliable method to identify the chemical composition of microplastics is by infrared spectroscopy. Most studies reported that plastic fragments were polyethylene and polypropylene polymers. Units commonly used for abundance estimates are "items per m(2)" for sediment and sea surface studies and "items per m(3)" for water column studies. Mesh size of sieves and filters used during sampling or sample processing influence abundance estimates. Most studies reported two main size ranges of microplastics: (i) 500 μm-5 mm, which are retained by a 500 μm sieve/net, and (ii) 1-500 μm, or fractions thereof that are retained on filters. We recommend that future programs of monitoring continue to distinguish these size fractions, but we suggest standardized sampling procedures which allow the spatiotemporal comparison of microplastic abundance across marine environments.
Key Findings
1
Infrared spectroscopy was identified as the most reliable method for determining microplastic chemical composition, with polyethylene and polypropylene the most frequently reported polymers.
2
Marine sediment was most often sampled from sandy beaches at the high-tide line, while seawater was commonly sampled at the surface using neuston nets.
3
Mesh size strongly affects abundance estimates; the review recommends distinguishing 500 μm–5 mm and 1–500 μm fractions and standardizing monitoring procedures for spatial and temporal comparisons.
4
Sample processing generally involved density separation, filtration, sieving, and visual sorting; visual identification relied on type, shape, degradation stage, and color.
5
The review of 68 studies identified three marine microplastic sampling strategies: selective, volume-reduced, and bulk sampling.
Research Object
Microplastics in the marine environment
Research Subject
Methods for identifying and quantifying microplastics, including sampling, processing, chemical-composition determination, and abundance estimation
Publication Details
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2012-02-09
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