Ifremer, RBE/CCEM, F-44000 Nantes, France.
Ifremer, RBE/CCEM, F-44000 Nantes, France.
Mar Pollut Bull. 2022 Feb;175:113398. doi: 10.1016/j.marpolbul.2022.113398. Epub 2022 Feb 1.
The advent of Multicollector ICP-MS inaugurated the analysis of new metal isotope systems, the so-called "non-traditional" isotopes. They are now available tools to study geochemical and ecotoxicological aspects of marine metal contamination and hence, to push the frontiers of our knowledge. However, such applications are still in their infancy, and an accessible state-of-the-art describing main applications, obstacles, gaps, and directions for further development was missing from the literature. This paper fills this gap and aims to encourage the marine scientific community to explore the contributions of this newly available information for the fields of chemical risk assessment, biomonitoring, and trophic transfer of metal contaminants. In the current "Anthropocene" epoch, metal contamination will continue to threaten marine aquatic ecosystems, and "non-traditional" isotopes can be a valuable tool to detect human-induced changes across time-space involving metal contaminants, and their interaction with marine biota.
多接收电感耦合等离子体质谱仪的出现开创了新的金属同位素系统分析,即所谓的“非传统”同位素分析。它们现在是研究海洋金属污染的地球化学和生态毒理学方面的工具,因此推动了我们知识的前沿。然而,这些应用仍处于起步阶段,文献中缺乏描述主要应用、障碍、差距和进一步发展方向的最新技术状态。本文填补了这一空白,旨在鼓励海洋科学界探索这一新信息在化学风险评估、生物监测和金属污染物营养转移等领域的贡献。在当前的“人类世”时代,金属污染将继续威胁海洋水生生态系统,“非传统”同位素可以成为一种有价值的工具,用于检测跨时空涉及金属污染物及其与海洋生物群相互作用的人为变化。