Genc Sinan, Icoz Kutay, Erdem Talha
Department of Electrical-Electronics Engineering, Faculty of Engineering, Abdullah Gül University, Kayseri 38080, Turkey.
R Soc Open Sci. 2023 Aug 9;10(8):230586. doi: 10.1098/rsos.230586. eCollection 2023 Aug.
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 angular scattering features. We subsequently present a low-cost setup to measure the optical scattering of the particles. Theoretical investigation shows that the angular distribution of the scattered light by microplastics carries distinct signatures of the particle size and the refractive index. The results can be used to develop a portable, low-cost setup to detect microplastics in water.
准确快速地表征水介质中的微米级塑料颗粒需要深入了解光与这些颗粒的相互作用。由于米氏散射理论的复杂性,散射光的特征很少与这些微小物体的物理性质相关联。为了解决这个问题,我们通过对角度散射特征进行数值研究,揭示了波长相关的光学散射图案与颗粒尺寸和折射率之间的关系。随后,我们提出了一种低成本的装置来测量颗粒的光学散射。理论研究表明,微塑料散射光的角度分布带有颗粒尺寸和折射率的明显特征。这些结果可用于开发一种便携式、低成本的装置来检测水中的微塑料。