Study on marine microplastics monitoring based on infrared spectroscopy technology

IF 0.7 4区 材料科学 Q3 Materials Science
Shengmei Shang, Yanwei Guo, Jing Song, Liping Liu
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引用次数: 0

Abstract

In recent years, microplastics particles have been detected in many sea areas around the world. Microplastics has done great harm to marine and terrestrial seawater ecosystems, so it is necessary to obtain the effective statistical data of microplastics in the environment accurately and quickly for the further study of pollution in microplastics. In this paper, based on IR (Infrared Spectroscopy) technology, hyperspectral images of marine microplastics samples containing different materials were obtained. SVM (Support Vector Machine) algorithm is used to identify microplastics in hyperspectral images. The results show that the microplastics abundance ranges from 5.193 to 20.281 N/L, 6.087 to 38.679 N/L and 7.498 to 11.084 N/L, respectively, and the average abundance is 11.83 N/L, 24.84 N/L and 19.27 N/L, respectively. The types of microplastics in the bottom water of the bay in the study area are mainly fibers (53–68%) and debris (23–34%). NIR (Near Infrared) analysis shows that the characteristic curves of microplastics spectra of the same species with different particle sizes are different. IR technology combined with chemometrics algorithm has great potential for the detection of microplastics in seawater surface and seawater. This method is simple and feasible, and has the feasibility of popularization.
基于红外光谱技术的海洋微塑料监测研究
近年来,在世界各地的许多海域都检测到微塑料颗粒。微塑料对海洋和陆地海水生态系统造成了极大的危害,因此准确、快速地获取环境中微塑料的有效统计数据是进一步研究微塑料污染的必要条件。本文基于红外光谱(IR)技术,获得了不同材料海洋微塑料样品的高光谱图像。采用支持向量机(SVM)算法对高光谱图像中的微塑料进行识别。结果表明:微塑料丰度范围分别为5.193 ~ 20.281 N/L、6.087 ~ 38.679 N/L和7.498 ~ 11.084 N/L,平均丰度分别为11.83、24.84和19.27 N/L。研究区海湾底水微塑料的类型主要为纤维(53-68%)和碎屑(23-34%)。近红外(NIR)分析表明,同一物种不同粒径的微塑料光谱特征曲线是不同的。红外光谱技术结合化学计量学算法对海水表面和海水中微塑料的检测具有很大的潜力。该方法简单可行,具有推广的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
0.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Information not localized
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