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Elevated trace elements in sediments and seagrasses at CO_2 seeps

机译:CO_2渗漏处沉积物和海草中的微量元素升高

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摘要

Seagrasses often occur around shallow marine CO2 seeps, allowing assessment of trace metal accumulation. Here, we measured Cd, Cu, Hg, Ni, Pb and Zn levels at six CO2 seeps and six reference sites in the Mediterranean. Some seep sediments had elevated metal concentrations; an extreme example was Cd which was 43x more concentrated at a seep site than its corresponding reference site. Three seeps had metal levels that were predicted to adversely affect marine biota, namely Vulcano (for Hg), Ischia (for Cu) and Paleochori (for Cd and Ni). There were higher-than-sediment levels of Zn and Ni in Posidonia oceanica and of Zn in Cymodocea nodosa, particularly in roots. High levels of Cu were found in Ischia seep sediments, yet seagrass was abundant there, and the plants contained low levels of Cu. Differences in bioavailability and toxicity of trace elements helps explain why seagrasses can be abundant at some CO2 seeps but not at others.
机译:海草经常出现在浅海CO2渗漏周围,可以评估痕量金属的积累。在这里,我们测量了地中海中六个CO2渗漏和六个参考点处的Cd,Cu,Hg,Ni,Pb和Zn水平。一些渗流沉积物的金属浓度升高。一个极端的例子是Cd,其在渗透位点的浓度比相应的参考位点高43倍。三种渗出物的金属含量被预测会对海洋生物群产生不利影响,分别是Vulcano(汞),Ischia(铜)和Paleochori(Cd和Ni)。大洋波塞冬中的锌和镍的含量高于沉积物,结节藻中的锌含量高于沉积物,尤其是在根部。在伊斯基亚州的渗流沉积物中发现了高含量的铜,但那里的海草却很丰富,植物中的铜含量也很低。微量元素的生物利用度和毒性的差异有助于解释为什么海草在某些CO2渗漏处富含,而在其他CO2渗漏处却不丰富。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第1期|104810.1-104810.13|共13页
  • 作者

  • 作者单位

    Univ Algarve Ctr Marine Sci Campus Gambelas P-8005139 Faro Portugal|Univ Plymouth Sch Biol & Marine Sci Plymouth PL48A Devon England;

    Univ Algarve Ctr Marine Sci Campus Gambelas P-8005139 Faro Portugal;

    Univ Plymouth Sch Biol & Marine Sci Plymouth PL48A Devon England|Univ Tsukuba Shimoda Marine Res Ctr Shizuoka 4150025 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioaccumulation; Bioavailability; Ocean acidification; Posidonia oceanica; Cymodocea nodosa;

    机译:生物蓄积;生物利用度;海洋酸化;大洋波塞冬结节菜;

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