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鸟类作为悬浮大气微塑料和人工纤维生物指示剂的潜在用途。

The potential use of birds as bioindicators of suspended atmospheric microplastics and artificial fibers.

机构信息

Department of Chemical Engineering, Universidad de Alcalá, Madrid, Alcalá de Henares E-28871, Spain.

Department of Biology, Faculty of Science, Universidad Autónoma de Madrid, Madrid E-28049, Spain; Centro de Investigación en Biodiversidad y Cambio Global (CIBC-UAM), Universidad Autónoma de Madrid, C Darwin 2, Madrid 28049, Spain.

出版信息

Ecotoxicol Environ Saf. 2024 Sep 1;282:116744. doi: 10.1016/j.ecoenv.2024.116744. Epub 2024 Jul 16.

Abstract

Microplastics (MPs) and artificial fibers (AFs) have been detected suspended tens of meters above ground level in the atmosphere, yet empirical data on them remain scarce. This study aimed to investigate the presence of MPs and AFs in the digestive and respiratory systems of two abundant bird species, the Common House Martin (Delichon urbicum) and the Common Swift (Apus apus), within the Community of Madrid, Spain. Given that these birds spend the majority of their lives airborne, engaging in activities such as mating and sleeping during flight, the research sought to assess the potential of using these bird species as bioindicators for suspended atmospheric MPs and AFs. Samples were obtained from necropsies of birds (N = 24) collected primarily between spring and summer from 2021 to 2023. Only individuals that died within the initial 24-hour period and had not been fed were selected for examination to avoid contamination. MPs and AFS were identified by micro-FTIR, characterized and quantified. Results revealed that 75 % of the sampled birds exhibited at least one MPs in their respiratory and/or digestive system. All identified MPs were fibers, with polyester (PES) being the most predominant (48 %), followed by acrylic fibers (ACR; 28 %), and polyethylene (PE; 18 %). The average concentrations in the respiratory system were 1.12 ± 0.45 MPs/specimen and 2.78 ± 1.04 AFs/specimen for Common Swift and 0.75 ± 0.30 MPs/specimen and 0.75 ± 0.36 AFs/specimen for House Martin. In the digestive system, these were 1.92 ± 0.72 MPs/specimen and 3.42 ± 0.69 AFs/specimen for Common Swift, and 1.34 ± 0.50 MPs/specimen and 1.39 ± 0.47 AFs/specimen for House Martin. Birds collected areas with high population density located in the direction of the prevailing winds showed a concentration of MPs significantly higher in the digestive system. Taken together, these findings confirmed the potential use of these birds as bioindicators for monitoring of suspended atmospheric MPs and AFs.

摘要

微塑料(MPs)和人工纤维(AFs)已在距地面数十米的大气中检测到悬浮存在,但关于它们的经验数据仍然很少。本研究旨在调查在西班牙马德里社区内,两种丰富鸟类(家燕和普通雨燕)的消化系统和呼吸系统中存在 MPs 和 AFs 的情况。鉴于这些鸟类大部分时间都在空中生活,它们在空中进行交配和睡眠等活动,因此研究旨在评估使用这些鸟类作为悬浮大气 MPs 和 AFs 的生物标志物的潜力。样本来自于 2021 年至 2023 年期间春季和夏季主要收集的鸟类尸检(N=24)。仅选择在最初 24 小时内死亡且未进食的个体进行检查,以避免污染。使用微傅里叶变换红外光谱(micro-FTIR)鉴定、表征和定量 MPs 和 AFS。结果表明,75%的采样鸟类在其呼吸和/或消化系统中至少存在一个 MPs。所有鉴定出的 MPs 均为纤维,其中聚酯(PES)最为常见(48%),其次是丙烯纤维(ACR;28%)和聚乙烯(PE;18%)。普通雨燕的呼吸系统中的平均浓度为 1.12±0.45 MPs/样本和 2.78±1.04 AFs/样本,家燕的呼吸系统中的平均浓度为 0.75±0.30 MPs/样本和 0.75±0.36 AFs/样本。在消化系统中,普通雨燕的平均浓度为 1.92±0.72 MPs/样本和 3.42±0.69 AFs/样本,家燕的平均浓度为 1.34±0.50 MPs/样本和 1.39±0.47 AFs/样本。在消化系统中,收集在高人口密度区域并处于盛行风向的鸟类样本中 MPs 的浓度明显更高。综上所述,这些发现证实了这些鸟类作为监测悬浮大气 MPs 和 AFs 的生物标志物的潜力。

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