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人为因素导致的海洋环境中钆污染及其生态影响。

Anthropogenic gadolinium contaminations in the marine environment and its ecological implications.

机构信息

School of Resources, Environment and Materials, Guangxi University, Nanning, 530004, China; Guangxi Laboratory on the Study of Coral Reefs in the South China Sea, School of Marine Sciences, Guangxi University, Nanning, 530004, China.

Guangxi Laboratory on the Study of Coral Reefs in the South China Sea, School of Marine Sciences, Guangxi University, Nanning, 530004, China.

出版信息

Environ Pollut. 2024 Oct 15;359:124740. doi: 10.1016/j.envpol.2024.124740. Epub 2024 Aug 13.

Abstract

Due to the widespread application in medicine and industry of anthropogenic gadolinium (Gd), the widespread of Gd anomaly in surface water has leading to disruption of the natural Gd geochemical cycle. However, challenges related to the identification and quantification of Gd, assessment of its impacts on marine ecosystems, and exploration of strategies for mitigating its adverse effects still exist. Meanwhile, as the major source of the Gd, the environmental geochemical behavior of Gd-based contrast agents (GBCAs), which are used in medical diagnostics in magnetic resonance imaging (MRI), are still poorly understood. In this review, we 1) analyzed Gd anomalies in samples from published literature worldwide, confirmed their prevalence (81.25% for sea and lake water, 72.73% for river water), 2) demonstrated that the third-order polynomial method is the preferred approach for the detection of Gd in surface seawater, 3) outlined the species and applications of Gd and its impacts on marine environment, 4) explored the process of GBCAs influx into the ocean and demonstrated the concentration of Gd in coral samples was mainly affected by terrestrial input GBCAs (63.75%) through Pearson correlation analysis and principle component analysis, 5) proposed effective management strategies for GBCAs at all stages from production to release into the ocean, 6) formulated an expectation for future research on marine Gd.

摘要

由于人为钆(Gd)在医学和工业中的广泛应用,Gd 在地表水的广泛存在导致了自然 Gd 地球化学循环的中断。然而,在识别和量化 Gd、评估其对海洋生态系统的影响以及探索减轻其不利影响的策略方面仍然存在挑战。同时,作为 Gd 的主要来源,用于磁共振成像(MRI)中医学诊断的基于 Gd 的造影剂(GBCAs)的环境地球化学行为仍知之甚少。在这篇综述中,我们 1)分析了来自世界各地已发表文献的样品中的 Gd 异常,证实了它们的普遍性(海水和湖水为 81.25%,河水为 72.73%),2)表明三阶多项式方法是检测地表水 Gd 的首选方法,3)概述了 Gd 的种类和应用及其对海洋环境的影响,4)探讨了 GBCAs 流入海洋的过程,并通过 Pearson 相关分析和主成分分析证明珊瑚样本中的 Gd 浓度主要受陆地输入 GBCAs(63.75%)的影响,5)提出了从生产到释放到海洋的各个阶段对 GBCAs 进行有效管理的策略,6)对海洋 Gd 的未来研究提出了期望。

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