Institute of Biological Sciences, Cardinal Stefan Wyszynski University in Warsaw, Poland.
Faculty of Mathematics and Natural Sciences, Cardinal Stefan Wyszynski University in Warsaw, Poland.
Waste Manag Res. 2020 Nov;38(11):1231-1238. doi: 10.1177/0734242X20938448. Epub 2020 Jul 11.
The contamination of freshwater ecosystems with microfibres has not yet been studied in Poland. We analysed samples from a river and three lakes located in central and northeastern Poland. A significantly higher number of fibres were reported in the river, which runs through large cities, compared with the lake situated within the Landscape Park. Fibres smaller than 1.0 mm dominated, especially in the river where they constituted 39% of all fibres detected. We found more microplastics (⩽ 4930 fibres·m) by using a mesh size of 20 µm compared with other studies of inland waters. The use of Raman spectroscopy allowed us to identify conventional plastic polymers: polyethylene terephthalate, polyester and polyurethane. We estimated that up to 25 g of microplastic in the form of fibres might be in the lake water under the surface. We found microplastic fibres in Majcz Lake situated within the Masurian Landscape Park. This suggests that microfibres are carried by the wind and rain and enter freshwater isolated from sewage outlets. By using the control sample and an air-test of microfibres in the laboratory, we observed that there is a high probability of contamination with microplastic in the field samples (up to 30% of all fibres detected). The contamination risk noted from the samples cannot be ignored; this could be particularly important for analysis of microplastic in remote freshwater ecosystems.
波兰尚未对淡水生态系统中的微纤维污染进行研究。我们分析了来自波兰中部和东北部的一条河流和三个湖泊的样本。与位于景观公园内的湖泊相比,流经大城市的河流中报告的纤维数量明显更高。小于 1.0 毫米的纤维占主导地位,尤其是在河流中,它们占所有检测到纤维的 39%。与其他内陆水域的研究相比,我们使用 20 微米的网孔大小发现了更多的微塑料(⩽ 4930 根纤维·米)。拉曼光谱分析使我们能够识别出常见的塑料聚合物:聚对苯二甲酸乙二醇酯、聚酯和聚氨酯。我们估计,在水面以下的湖泊水中可能有多达 25 克的纤维状微塑料。我们在马祖里景观公园内的马伊采湖发现了微塑料纤维。这表明微纤维是被风和雨携带的,并进入与污水排放口隔离的淡水。通过使用对照样本和实验室中的空气微纤维测试,我们观察到现场样本中微塑料污染的可能性很高(高达检测到的所有纤维的 30%)。从样本中注意到的污染风险不容忽视;这对于偏远淡水生态系统中的微塑料分析可能尤为重要。