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从浅水热带湖泊的水样和底泥采样中评估微塑料证据。

Microplastic evidence assessment from water and sediment sampling in a shallow tropical lake.

机构信息

Instituto Politécnico Nacional, CIIDIR Unidad Michoacán, Jiquilpan de Juárez, Michoacán, Mexico.

Instituto Politécnico Nacional, CICIMAR Centro Interdisciplinario de Ciencias Marinas, Avenida Instituto, La Paz, Baja California Sur, Mexico.

出版信息

Water Environ Res. 2024 Sep;96(9):e11123. doi: 10.1002/wer.11123.

DOI:10.1002/wer.11123
PMID:39223713
Abstract

Microplastics (MPs) severely threaten inland waterbodies due to the direct impact of human activities. In the present study, spatial and temporal patterns of MPs in a shallow tropical lake were assessed, describing their size, morphology, and polymer types. Water and sediment samples were collected from Lake Chapala during three seasons, and MPs were quantified with a stereomicroscope. The structure, elemental composition, and polymeric composition were determined via environmental scanning electron microscopy and Fourier transform infrared spectroscopy. The highest average concentration of microplastics in Lake Chapala was detected during the low-water period in April 2022 (2.35 items/L), exceeding the July 2022 rainy season concentration (1.8 items/L) by 0.25 items/L, and sediment concentrations were also higher in April 2022 (219 items/kg) compared to July 2022 (210 items/kg). This study highlights the significant pollution of Lake Chapala with microplastics, emphasizing the need for urgent measures to manage plastic waste and mitigate its environmental impact on aquatic ecosystems. PRACTITIONER POINTS: Microplastic contamination was evaluated in Lake Chapala. The distribution profiles of microplastics were different in each area. Heavy metals osmium, tellurium, and rhodium were found associated with the PMs. Polymers were found in this study.

摘要

微塑料(MPs)严重威胁内陆水体,这主要是由于人类活动的直接影响。本研究评估了一个浅热带湖泊中 MPs 的时空分布模式,描述了它们的大小、形态和聚合物类型。在三个季节从查帕拉湖采集水和沉积物样本,并使用立体显微镜定量 MPs。通过环境扫描电子显微镜和傅里叶变换红外光谱确定结构、元素组成和聚合组成。查帕拉湖中微塑料的最高平均浓度是在 2022 年 4 月枯水期检测到的(2.35 个/升),比 2022 年 7 月雨季浓度(1.8 个/升)高 0.25 个/升,2022 年 4 月的沉积物浓度也高于 2022 年 7 月(219 个/千克比 210 个/千克)。本研究强调了查帕拉湖受到微塑料严重污染的问题,突出了需要采取紧急措施来管理塑料废物并减轻其对水生生态系统的环境影响。

从业者要点

评估了查帕拉湖中的微塑料污染情况。微塑料在各个区域的分布情况不同。重金属锇、碲和铑与 PMs 有关。本研究中发现了聚合物。

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