Ardini Benedetto, Pittura Lucia, Frontini Andrea, Benedetti Maura, Gorbi Stefania, Regoli Francesco, Cerullo Giulio, Valentini Gianluca, Manzoni Cristian
Dipartimento di Fisica, Politecnico di Milano, Piazza Leonardo da Vinci 32, Milano20133, Italy.
Dipartimento di Scienze della Vita e dell'Ambiente, Università Politecnica delle Marche, Ancona 60131, Italy.
Environ Sci Technol. 2025 May 13;59(18):9255-9264. doi: 10.1021/acs.est.5c00165. Epub 2025 Apr 29.
A number of applications require methods to detect with high spatial resolution and chemical specificity microplastics (MPs) extracted from different matrices. Here we introduce a wide-field hyperspectral Fourier transform Raman microscope for the rapid detection and identification of MPs. The instrument, based on a common-path birefringent interferometer, combines high spatial (∼1 μm) and spectral (∼23 cm) resolution with fast measurement times (∼15 min for a 100 kpixel image) and enables the suppression of sample fluorescence by a proper choice of the scan interval of the interferometer. After validating the instrument on MPs of commercial origin, we demonstrate its ability to detect MPs extracted from different matrices, by filtering seawater and pretreated gastrointestinal tracts of fish, and analyzing the MPs concentrated onto the filters. We expect that our microscope will enable high-quality, cost-effective, and rapid identification of MPs, fulfilling also the requirements of large-scale monitoring plans of different environmental matrices.
许多应用需要具备高空间分辨率和化学特异性的方法来检测从不同基质中提取的微塑料(MPs)。在此,我们介绍一种用于快速检测和识别微塑料的宽场高光谱傅里叶变换拉曼显微镜。该仪器基于共光路双折射干涉仪,将高空间分辨率(约1μm)和光谱分辨率(约23cm⁻¹)与快速测量时间(100 k像素图像约15分钟)相结合,并通过适当选择干涉仪的扫描间隔来抑制样品荧光。在用商业来源的微塑料对该仪器进行验证后,我们通过过滤海水和预处理鱼类的胃肠道,并分析浓缩在滤膜上的微塑料,展示了其检测从不同基质中提取的微塑料的能力。我们期望我们的显微镜能够实现对微塑料的高质量、经济高效且快速的识别,同时也满足不同环境基质大规模监测计划的要求。