Riverbed depth-specific microplastics distribution and potential use as process marker

微塑料 沉积物 聚丙烯 聚乙烯 聚苯乙烯 聚对苯二甲酸乙二醇酯 丰度(生态学) 环境科学 矿物学 聚合物 环境化学 地质学 化学 材料科学 复合材料 生物 生态学 地貌学
作者
Marco Pittroff,Constantin Loui,Sascha E. Oswald,Mathias Bochow,Jan Kamp,Georg Dierkes,Hermann‐Josef Lensing,Matthias Munz
出处
期刊:Environmental Science and Pollution Research [Springer Science+Business Media]
卷期号:31 (32): 45326-45340 被引量:6
标识
DOI:10.1007/s11356-024-34094-z
摘要

Riverbed sediments have been identified as temporary and long-term accumulation sites for microplastic particles (MPs), but the relocation and retention mechanisms in riverbeds still need to be better understood. In this study, we investigated the depth-specific occurrence and distribution (abundance, type, and size) of MPs in river sediments down to a depth of 100 cm, which had not been previously investigated in riverbeds. In four sediment freeze cores taken for the Main River (Germany), MPs (≥ 100 µm) were detected using two complementary analytical approaches (spectroscopy and thermoanalytical) over the entire depth with an average of 21.7 ± 21.4 MP/kg or 31.5 ± 28.0 mg/kg. Three vertical trends for MP abundance could be derived, fairly constant in top layers (0-‍30 cm), a decrease in middle layers (30-60 cm), and a strong increase in deep layers (60-100 cm). The dominant polymer types were polyethylene (PE), polypropylene (PP), and polystyrene (PS). Polyethylene terephthalate (PET) and PP were also found in deep layers, albeit with the youngest age of earliest possible occurrence (EPO age of 1973 and 1954). The fraction of smaller-sized MPs (100-500 µm) increased with depth in shallow layers, but the largest MPs (> 1 mm) were detected in deep layers. Based on these findings, we elucidate the relationship between the depth-specific MP distribution and the prevailing processes of MP retention and sediment dynamics in the riverbed. We propose some implications and offer an initial conceptual approach, suggesting the use of microplastics as a potential environmental process tracer for driving riverbed sediment dynamics.
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