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利用微傅里叶变换红外成像技术对环境微塑料的降解程度进行分析。

Degradation degree analysis of environmental microplastics by micro FT-IR imaging technology.

机构信息

College of Electrical and Electronic Engineering, Wenzhou University, Wenzhou, 325035, PR China.

College of Electrical and Electronic Engineering, Wenzhou University, Wenzhou, 325035, PR China.

出版信息

Chemosphere. 2021 Jul;274:129779. doi: 10.1016/j.chemosphere.2021.129779. Epub 2021 Jan 24.

Abstract

The degradation potential of microplastics remains a critical issue for researching marine litter, and it is one of the most important factors that can be used for calculating the persistence time of microplastics in certain conditions. However, there are lack of standard or approved methods for estimating the ageing stage of environmental microplastics. In this study, the potential of spectral-image fusion strategy was investigated to analyze the degradation degree of polyethylene microplastics in natural exposure of coastline. The proposed spectral-image fusion linear model showed a significant ability to classify the degradation degree of environmental microplastics samples with the best accuracy of 97.1% as compared to two single-sensing information-based linear models (with one spectral wavelength of the carbonyl index at 1720 cm or three-channel components from LAB color-space). This is the first attempt to qualitatively measure the degradation degree of the naturally exposed microplastics based on spectral-image fusion model. The proposed fusion model based strategy is an effective tool for predicting the degradation degree of the field exposed microplastics.

摘要

微塑料的降解潜力仍然是海洋垃圾研究的一个关键问题,它是计算微塑料在特定条件下持久性的最重要因素之一。然而,对于评估环境微塑料老化阶段,还缺乏标准或经过验证的方法。在这项研究中,我们研究了光谱-图像融合策略的潜力,以分析聚乙烯微塑料在自然海岸线暴露条件下的降解程度。与基于两个单传感信息的线性模型(一个羰基指数在 1720 cm 处的光谱波长或来自 LAB 颜色空间的三通道分量)相比,所提出的光谱-图像融合线性模型显示出对环境微塑料样品降解程度进行分类的显著能力,其准确率最高可达 97.1%。这是首次尝试基于光谱-图像融合模型定性测量自然暴露微塑料的降解程度。所提出的基于融合模型的策略是预测野外暴露微塑料降解程度的有效工具。

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