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Increase in mercury in Pacific yellowfin tuna

机译:太平洋黄鳍金枪鱼中的汞含量增加

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摘要

Mercury is a toxic trace metal that can accumulate to levels that threaten human and environmental health. Models and empirical data suggest that humans are responsible for a great deal of the mercury actively cycling in the environment at present. Thus, one might predict that the concentration of mercury in fish should have increased dramatically since the Industrial Revolution. Evidence in support of this hypothesis has been hard to find, however, and some studies have suggested that analyses of fish show no change in mercury concentration. By compiling and re‐analyzing published reports on yellowfin tuna (Thunnus albacares) caught near Hawaii (USA) over the past half century, the authors found that the concentration of mercury in these fish currently is increasing at a rate of at least 3.8% per year. This rate of increase is consistent with a model of anthropogenic forcing on the mercury cycle in the North Pacific Ocean and suggests that fish mercury concentrations are keeping pace with current loading increases to the ocean. Future increases in mercury in yellowfin tuna and other fishes can be avoided by reductions in atmospheric mercury emissions from point sources. Environ Toxicol Chem 2015;34:931–934. © 2015 SETAC
机译:汞是一种有毒的微量金属,其累积量会威胁到人类和环境健康。模型和经验数据表明,人类是目前环境中大量汞主动循环的原因。因此,可以预见,自工业革命以来,鱼中的汞浓度应会急剧增加。然而,很难找到支持这一假设的证据,而且一些研究表明,对鱼类的分析表明汞浓度没有变化。通过对过去半个世纪在夏威夷(美国)附近捕捞的黄鳍金枪鱼(Thunnus albacares)的汇编和重新分析的报告,作者发现,目前这些鱼中的汞浓度以每千克至少3.8%的速度增长。年。这种增加速度与人为强迫对北太平洋汞循环的模型相一致,并表明鱼的汞浓度与海洋当前的负荷增加保持同步。减少点源大气中的汞排放可以避免黄鳍金枪鱼和其他鱼类中汞的未来增加。 Environ Toxicol Chem 2015; 34:931–934。 ©2015 SETAC

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