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加拿大北极地区的海鸟、哺乳动物和鱼类中的紫外线吸收剂和工业抗氧化剂。

Ultraviolet absorbents and industrial antioxidants in seabirds, mammals, and fish from the Canadian Arctic.

机构信息

Institut des Sciences de la Mer, Université du Québec à Rimouski, Rimouski, Québec G5L 3A1, Canada.

Ecotoxicology and Wildlife Health Division, Environment and Climate Change Canada, Carleton University, Ottawa, Ontario K1A 0H3, Canada.

出版信息

Sci Total Environ. 2024 Nov 15;951:175693. doi: 10.1016/j.scitotenv.2024.175693. Epub 2024 Aug 22.

Abstract

Ultraviolet (UV) absorbents and industrial antioxidants are two groups of plastic-derived contaminants of emerging environmental concern. However, their distribution and fate are poorly understood in Arctic wildlife. In the present study, 16 UV absorbents (10 benzotriazole UV stabilizers (BZT-UVs) and 6 organic UV filters (UVFs)) and 7 industrial antioxidants (6 aromatic secondary amines (Ar-SAs) and 2,6-di-tert-butylphenol (26DTBP)) were analyzed in the livers of thick-billed murre (Uria lomvia; n = 28), northern fulmar (Fulmarus glacialis; n = 4), black guillemot (Cepphus grylle; n = 11), polar bear (Ursus maritimus; n = 18), beluga whale (Delphinapterus leucas; n = 10), landlocked (n = 25) and sea-run (n = 10) Arctic char (Salvelinus alpinus) from the Canadian Arctic collected between 2017 and 2021. Compared to industrial antioxidants (median range: ΣAr-SAs: not calculated due to detection frequency < 30 % (NA)-4.06 ng/g, wet weight (ww); 26DTBP: NA-1.91 ng/g ww), UV absorbents (median range: ΣBZT-UVs: NA-8.71 ng/g ww; ΣUVFs: NA-48.3 ng/g ww) generally showed greater concentrations in the liver of these species. Seabirds accumulated higher levels of these contaminants (median range: ΣBZT-UVs: 3.38-8.71 ng/g ww; ΣUVFs: NA-48.3 ng/g ww; ΣAr-SAs: 0.07-4.06 ng/g ww; 26DTBP: NA-1.14 ng/g ww)) than the other groups (median range: ΣBZT-UVs: NA-1.31 ng/g ww; ΣUVFs: NA-4.22 ng/g ww; ΣAr-SAs: NA; 26DTBP: NA-1.91 ng/g ww), suggesting that seabirds may be useful indicator species for future long-term monitoring. The livers of Arctic char in the Canadian Arctic generally contain lower levels of these contaminants than those of freshwater fish in temperate regions. Spatial variations were found in the liver of black guillemots, Hudson Bay polar bears, and landlocked char for some target contaminants, indicating differences in the levels of these contaminants in their surrounding environment or diet. Consumption of liver tissues from these species may expose humans to varying levels of UV absorbents and industrial antioxidants. This study establishes a baseline for future research of the spatial and temporal trends of these contaminants in Arctic species. It provides the basis for elucidating the fate of these contaminants and assessing their adverse effects at environmental-relevant concentrations in the Arctic. Factors influencing the accumulation patterns of these contaminants in Arctic biota and their potential health risks require further investigation.

摘要

紫外线 (UV) 吸收剂和工业抗氧化剂是两组新兴的环境关注的源自塑料的污染物。然而,它们在北极野生动物中的分布和命运还知之甚少。在本研究中,分析了 28 只厚嘴海鸦(Uria lomvia)、4 只北方巨海燕(Fulmarus glacialis)、11 只黑眉信天翁(Cepphus grylle)、18 只北极熊(Ursus maritimus)、10 只白鲸(Delphinapterus leucas)、25 只内陆北极红点鲑(Salvelinus alpinus)和 10 只洄游北极红点鲑的肝脏中的 16 种紫外线吸收剂(10 种苯并三唑紫外线稳定剂 (BZT-UVs) 和 6 种有机紫外线滤光剂 (UVFs)) 和 7 种工业抗氧化剂(6 种芳香族仲胺 (Ar-SAs) 和 2,6-二叔丁基苯酚 (26DTBP))。这些样本均采集自 2017 年至 2021 年期间的加拿大北极地区。与工业抗氧化剂(中值范围:ΣAr-SAs:未检出频率<30%(NA)-4.06ng/g,湿重(ww);26DTBP:NA-1.91ng/g ww)相比,紫外线吸收剂(中值范围:ΣBZT-UVs:NA-8.71ng/g ww;ΣUVFs:NA-48.3ng/g ww)在这些物种的肝脏中一般显示出更高的浓度。这些污染物在海鸟体内的积累水平更高(中值范围:ΣBZT-UVs:3.38-8.71ng/g ww;ΣUVFs:NA-48.3ng/g ww;ΣAr-SAs:0.07-4.06ng/g ww;26DTBP:NA-1.14ng/g ww),而在其他组(中值范围:ΣBZT-UVs:NA-1.31ng/g ww;ΣUVFs:NA-4.22ng/g ww;ΣAr-SAs:NA;26DTBP:NA-1.91ng/g ww)中的积累水平较低,这表明海鸟可能是未来长期监测的有用指示物种。加拿大北极地区的北极红点鲑肝脏中的这些污染物含量一般低于温带地区淡水鱼中的含量。黑眉信天翁、哈德逊湾北极熊和内陆北极红点鲑的肝脏中发现了一些目标污染物的空间变化,表明它们周围环境或饮食中这些污染物的水平存在差异。食用这些物种的肝脏可能会使人类接触到不同水平的紫外线吸收剂和工业抗氧化剂。本研究为未来研究北极物种中这些污染物的时空趋势奠定了基础。它为阐明这些污染物的命运以及在北极环境相关浓度下评估其对环境的不良影响提供了依据。影响这些污染物在北极生物群中积累模式及其潜在健康风险的因素需要进一步研究。

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