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一种使用尼罗红和自动化软件(MP-VAT)对微塑料进行常规定量分析的新方法。

A new approach for routine quantification of microplastics using Nile Red and automated software (MP-VAT).

作者信息

Prata Joana C, Reis Vanessa, Matos João T V, da Costa João P, Duarte Armando C, Rocha-Santos Teresa

机构信息

Centre for Environmental and Marine Studies (CESAM) & Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Sci Total Environ. 2019 Nov 10;690:1277-1283. doi: 10.1016/j.scitotenv.2019.07.060. Epub 2019 Jul 5.

Abstract

Microplastics are widespread contaminants in the environment. However, most identification protocols rely on long and subjective visual counting, which could be improved using staining dyes. Thus, the objective of this work is to identify the best staining dye protocol and create an objective and quick automated counting software for microplastics. Tests were conducted to identify the most appropriate of eight staining dye solutions and of six wavelengths for virgin and weathered synthetic polymers, textile fibers, natural organic matter and filters. Nile Red produced the best results (without interfering in infrared spectra) rendering microplastics fluorescent at 254 nm, but with limited number of fluorescent polymers, and at 470 nm (with orange filter), with fluorescence of plastics as well as natural organic matter (requiring a digestion step). Next, a script was developed in ImageJ for the automatic quantification and characterization in shape (fiber, fragment, particle) and size of fluorescent microplastics, the Microplastics Visual Analysis Tool (MP-VAT). MP-VAT was evaluated, producing recovery rates in the range of 89.0-111.1% in spiked filters under 470 nm. Furthermore, this package is accompanied by a script that sets a scale from a known filter diameter, MP-SCALE, and a script that allows user threshold setting, MP-ACT.

摘要

微塑料是环境中广泛存在的污染物。然而,大多数识别方案依赖于冗长且主观的目视计数,使用染色染料可能会有所改进。因此,本研究的目的是确定最佳的染色染料方案,并创建一个客观、快速的微塑料自动计数软件。进行了测试,以确定八种染色染料溶液中最适合的以及六种波长对于原始和老化的合成聚合物、纺织纤维、天然有机物和过滤器的适用性。尼罗红产生了最佳结果(不干扰红外光谱),使微塑料在254 nm处发出荧光,但荧光聚合物数量有限,在470 nm处(使用橙色滤光片),塑料以及天然有机物都发出荧光(需要消化步骤)。接下来,在ImageJ中开发了一个脚本,用于对荧光微塑料的形状(纤维、碎片、颗粒)和尺寸进行自动定量和表征,即微塑料视觉分析工具(MP-VAT)。对MP-VAT进行了评估,在470 nm下加标过滤器中的回收率在89.0-111.1%范围内。此外,该软件包还附带一个根据已知过滤器直径设置比例的脚本MP-SCALE和一个允许用户设置阈值的脚本MP-ACT。

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