2023
DOI: 10.1098/rsos.230586
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Numerical analysis and experimental verification of optical scattering from microplastics

Abstract: Accurate and fast characterization of the micron-sized plastic particles in aqueous media requires an in-depth understanding of light interaction with these particles. Due to the complexity of Mie scattering theory, the features of the scattered light have rarely been related to the physical properties of these tiny objects. To address this problem, we reveal the relation of the wavelength-dependent optical scattering patterns with the size and refractive index of the particles by numerically studying the angu… Show more

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Cited by 3 publications
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“…According to the Mie scattering theory [29,30], for spherical particles with a certain size distribution, the scattered light intensity e i at the i th detection site (corresponding to the scattering angle θ) is shown in Equations ( 1) and ( 2).…”
Section: Principle Of Polarization Difference Methodsmentioning
confidence: 99%
“…According to the Mie scattering theory [29,30], for spherical particles with a certain size distribution, the scattered light intensity e i at the i th detection site (corresponding to the scattering angle θ) is shown in Equations ( 1) and ( 2).…”
Section: Principle Of Polarization Difference Methodsmentioning
confidence: 99%