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Human influence on the global mercury cycle: understanding the past and projecting the future

机译:人类对全球汞循环的影响:了解过去并预测未来

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Humans have been releasing mercury (Hg) to the environment since antiquity. Due to the toxicity of Hg, the extent of anthropogenic enrichment is a global health concern. Here we use a global biogeochemical box model to quantify anthropogenic enrichment, investigate the timescales required to remove anthropogenic Hg from actively cycling reservoirs, and explore future anthropogenic emission scenarios and their impact on Hg accumulation. By considering the full history of anthropogenic emissions, we find that the global ocean has been substantially enriched by human activity, with implications for exposures of marine fish. Model simulations show anthropogenic Hg entering surface reservoirs is removed on the order of years. Future emission scenarios that achieve substantial reductions in global anthropogenic Hg emissions have the dual benefit of decreasing atmospheric deposition and decreasing the pool of legacy Hg actively cycling in terrestrial and oceanic ecosystems.Key words: mercury / biogeochemical box model / anthropogenic enrichment / legacy mercury
机译:自上古以来,人类一直在向环境释放汞(Hg)。由于汞的毒性,人为富集的程度是全球卫生关注的问题。在这里,我们使用全球生物地球化学盒模型来量化人为浓缩,调查从积极循环的水库中清除人为汞所需的时间尺度,并探讨未来的人为排放情景及其对汞积累的影响。通过考虑人为排放的全部历史,我们发现人类活动已大大丰富了全球海洋,这对海水鱼的接触产生了影响。模型仿真表明,进入地表储层的人为汞已被去除了数年。未来的排放情景可实现全球人为汞排放量的大幅减少,具有减少大气层沉积和减少陆生和海洋生态系统中主动循环的遗留汞池的双重好处。

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