Microplastics in the Mississippi River System during Flash Drought Conditions

Kendall Wontor, Boluwatife S. Olubusoye, James V. Cizdziel
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Abstract

The Mississippi River System is of great ecological and economic importance, making it crucial to monitor contaminants within it. While nutrient pollution is well studied, there are little data on microplastics (MPs) in the Mississippi River System (MSRS), especially during drought conditions. Herein, we characterize MP pollution from seven sites across the MSRS during both flash drought and non-drought periods using FTIR microspectroscopy (µ-FTIR). Additionally, we evaluate the impact of multiple water level conditions on MP polymer composition across five time points at a single sampling site. Of all MPs identified, polyethylene terephthalate (PET, 22%), resin (17%), and polyethylene (PE, 10%) were the most abundant polymers. Average concentrations ranged from 16 to 381 MPs/L across seven sites, with no significant difference in concentration between conditions. Irregular particles were the most common morphology, with most MPs falling in the lowest size range measured (30–100 μm). Drought condition had a significant (p < 0.001) impact on polymer composition, and polymers most strongly correlated with flash drought were mostly fluoropolymers. For the single sampling site, concentrations differed, but not significantly, across the five timepoints. These results demonstrate the complex relationship between MP concentration and drought condition, and also highlight the importance of fully characterizing MPs in environmental studies.
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暴旱期间密西西比河水系中的微塑料
密西西比河系统具有重要的生态和经济意义,因此对其中的污染物进行监测至关重要。虽然对营养物污染的研究很深入,但有关密西西比河水系(MSRS)中微塑料(MPs)的数据却很少,尤其是在干旱条件下。在本文中,我们使用傅立叶变换红外微光谱(µ-FTIR)分析了密西西比河水系七个地点在干旱和非干旱期间的微塑料污染特征。此外,我们还评估了单个采样点五个时间点的多种水位条件对 MP 聚合物组成的影响。在确定的所有 MP 中,聚对苯二甲酸乙二醇酯(PET,22%)、树脂(17%)和聚乙烯(PE,10%)是含量最高的聚合物。七个地点的平均浓度介于 16 至 381 MPs/L 之间,不同条件下的浓度差异不大。不规则颗粒是最常见的形态,大多数 MP 属于所测得的最小粒径范围(30-100 μm)。干旱条件对聚合物成分有显著影响(p < 0.001),与闪旱关系最密切的聚合物主要是含氟聚合物。就单个采样点而言,五个时间点的浓度存在差异,但不明显。这些结果表明了 MP 浓度与干旱状况之间的复杂关系,同时也强调了在环境研究中全面描述 MP 特性的重要性。
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