基于目标的图像分析方法检测水生环境中次生微塑料

Dahlia E. Carmona-Valdivieso, T. Valdivieso, V. Carmona-Galindo
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引用次数: 1

摘要

当塑料被丢弃时,它们不能生物降解,而是随着时间的推移分解成越来越小的颗粒,称为次级微塑料,它们对生物群和人类健康产生不利影响,并在环境中持续存在几个世纪。我们的研究目的是评估基于物体的图像分析在无滑移和湍流水条件下检测悬浮在水生中游环境中成分变化的微塑料的能力。我们发现,在单一类型和混合类型悬浮液中,聚丙烯、聚对苯二甲酸乙二醇酯和低密度聚乙烯微塑料污染的存在,通过平均红色(R)、平均蓝色(B)、平均绿色(G)或平均RBG像素强度都无法检测到,但通过地表水数字图像的总RBG像素强度可以明显检测到。我们的研究结果表明,基于物体的地表水图像分析来量化像素信息更适合于监测悬浮微塑料的存在和不存在,而不是逐步确定微塑料浓度。我们建议开发一款智能手机应用程序,以促进微塑料污染的公民科学监测,并对利用无人机图像促进基于云的时空羽流测绘的未来应用程序进行评论。
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Detection of Secondary Microplastics in an Aquatic Mesocosm by Means of Object-Based Image Analysis
When plastics are discarded, they do not biodegrade and instead break down over time into progressively smaller particles, termed secondary microplastics, which adversely impact biota and human health as well as persist in the environment for centuries. Our research objective was to evaluate the capabilities of object-based image analyses in detecting compositionally varied microplastics suspended in an aquatic mesocosm under no-slip and turbulent water conditions. We found that the presence of polypropylene, polyethylene terephthalate, and low-density polyethylene microplastic pollution in both single-type and mixed-type suspensions was not detectable by either average red (R), average blue (B), average green (G), or average RBG pixel intensities, but was significantly detectable by means of total RBG pixel intensity from digital imagery of the surface-water. Our findings suggest that object-based image analyses of surface waters to quantify pixel information is better suited for monitoring the presence and absence of suspended microplastics, rather than for the stepwise determination of microplastic concentrations. We propose the development of a smartphone application to facilitate citizen-science monitoring of microplastic contamination as well as comment on future applications utilizing drone imagery to boost cloud-based mapping spatiotemporal plumes.
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