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气溶胶粒子的颜色。

The color of aerosol particles.

机构信息

Department of Physics, Kansas State University, 1228 North Martin Luther King Jr. Dr., Manhattan, KS, 66502-2601, USA.

Corning Incorporated, 60 O'Connor Rd., Fairport, NY, 14450, USA.

出版信息

Sci Rep. 2023 Jan 28;13(1):1594. doi: 10.1038/s41598-023-28823-6.

Abstract

Digital in-line holography (DIH) is an established method to image small particles in a manner where image reconstruction is performed computationally post-measurement. This ability renders it ideal for aerosol characterization, where particle collection or confinement is often difficult, if not impossible. Conventional DIH provides a gray-scale image akin to a particle's silhouette, and while it gives the particle size and shape, there is little information about the particle material. Based on the recognition that the spectral reflectance of a surface is partly determined by the material, we demonstrate a method to image free-flowing particles with DIH in color with the eventual aim to differentiate materials based on the observed color. Holograms formed by the weak backscattered light from individual particles illuminated by red, green, and blue lasers are recorded by a color sensor. Images are reconstructed from the holograms and then layered to form a color image, the color content of which is quantified by chromaticity analysis to establish a representative signature. A variety of mineral dust aerosols are studied where the different signatures suggest the possibility to differentiate particle material. The ability of the method to resolve the inhomogeneous composition within a single particle in some cases is shown as well.

摘要

数字线全息术(DIH)是一种成熟的方法,可以在测量后通过计算来重建图像,从而对小颗粒进行成像。这种能力使其成为气溶胶特性分析的理想选择,因为在气溶胶特性分析中,颗粒的收集或限制通常是困难的,如果不是不可能的话。传统的 DIH 提供类似于颗粒轮廓的灰度图像,虽然它给出了颗粒的大小和形状,但关于颗粒材料的信息很少。基于这样的认识,即表面的光谱反射率部分取决于材料,我们展示了一种使用 DIH 对自由流动颗粒进行彩色成像的方法,最终目的是根据观察到的颜色来区分材料。由红色、绿色和蓝色激光照射单个颗粒的弱背散射光形成的全息图由彩色传感器记录。从全息图中重建图像,然后分层形成彩色图像,通过色度分析量化其颜色含量,以建立代表性特征。研究了各种矿物粉尘气溶胶,不同的特征表明有可能区分颗粒材料。该方法在某些情况下能够分辨单个颗粒内不均匀成分的能力也得到了展示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d43b/9884268/3cac7b1cd073/41598_2023_28823_Fig1_HTML.jpg

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