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东北大西洋褐藻中潜在有毒元素三十年的变化

Three Decades of Change in Potentially Toxic Elements in Brown Algae in the Northeast Atlantic Ocean.

作者信息

Pacín Carme, Fernández J Ángel, Conde-Amboage Mercedes, Lazzari Massimo, García-Seoane Rita, G Viana Inés, Varela Zulema, Real Carlos, Villares Rubén, Aboal Jesús R

机构信息

CRETUS Centre, Department of Functional Biology, Ecology Unit, Universidade de Santiago de Compostela, Santiago de Compostela 15782, Spain.

CIQUS Centre, Department of Physical Chemistry, Universidade de Santiago de Compostela, Santiago de Compostela 15782, Spain.

出版信息

Environ Sci Technol. 2025 Jun 3;59(21):10476-10487. doi: 10.1021/acs.est.4c14013. Epub 2025 May 22.

Abstract

Marine pollution from potentially toxic elements (PTEs) threatens coastal ecosystems, making long-term assessments essential. This study analyzes trends in Al, Cr, Fe, Ni, Cu, Zn, As, Cd, and Hg using 446 samples of , , and collected between 1990 and 2021 at 173 coastal sites in NW Spain. A consistent resampling approach revealed significant declines in most anthropogenic PTEs, including Cu (-84.7%), Cr (-84.6%), Hg (-49.6%), and Cd (-36.7%) over time. In contrast, arsenic increased by 36.1%, but the underlying causes remain unclear, with potential factors including changes in sediment inputs, bioavailability, or emerging sources such as groundwater discharges. Higher PTE levels were detected in inner estuarine areas, but no consistent latitudinal patterns emerged. Overall, the results suggest effective mitigation of coastal pollution, with reduced bioavailable PTEs entering the food web via spp. However, rising As levels and complex contamination dynamics underscore the need for continued monitoring. This study offers the most comprehensive standardized assessment of long-term PTE trends in brown algae to date, providing valuable insights for environmental policy and coastal management.

摘要

来自潜在有毒元素(PTEs)的海洋污染威胁着沿海生态系统,因此进行长期评估至关重要。本研究利用1990年至2021年间在西班牙西北部173个沿海地点采集的446份 、 和 的样本,分析了铝、铬、铁、镍、铜、锌、砷、镉和汞的变化趋势。一种一致的重采样方法显示,随着时间的推移,大多数人为来源的PTEs显著下降,包括铜(-84.7%)、铬(-84.6%)、汞(-49.6%)和镉(-36.7%)。相比之下,砷增加了36.1%,但其根本原因仍不清楚,潜在因素包括沉积物输入、生物有效性的变化或诸如地下水排放等新出现的来源。在内河口地区检测到较高的PTEs水平,但没有出现一致的纬度模式。总体而言,结果表明沿海污染得到了有效缓解,通过 物种进入食物网的生物可利用PTEs减少。然而,砷含量的上升和复杂的污染动态凸显了持续监测的必要性。本研究提供了迄今为止对褐藻中PTEs长期趋势最全面的标准化评估,为环境政策和沿海管理提供了有价值的见解。

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