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首页> 外文期刊>Isotopes in environmental and health studies >Bladder wrack (Fucus vesiculosus) as a multi-isotope bio- monitor in an urbanized fjord of the western Baltic Sea
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Bladder wrack (Fucus vesiculosus) as a multi-isotope bio- monitor in an urbanized fjord of the western Baltic Sea

机译:膀胱残骸(Fucus vesiculosus)作为波罗的海西部城市化峡湾的多同位素生物监测仪

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摘要

The spatial variations in the elemental and stable carbon, nitrogen, and sulphur isotope composition of bladder wrack (Fucus vesiculosus) growing along the shore line of the semi-enclosed urbanized Kiel Fjord (western Baltic Sea) was investigated at more than 60 sites. The analyses of the carbon-nitrogen-sulphur (CNS) stoichiometry and C and N stable isotope signature of F. vesiculosus displayed substantial differences between the northwestern and the south-eastern parts of the Kiel Fjord. Different size classes displayed in part differences in C: N and C: S ratios, and the carbon isotope composition, reflecting the impact of the boundary conditions during growth. Whereas the sulphur isotope composition was controlled by the assimilation of seawater sulphate, the carbon isotope composition reflected the difference in the composition of surface waters. The delta N-15 values of the organic tissue tend to be an integrated monitor of anthropogenic impacts on the fjord. Results are compared to the composition of surface waters.
机译:在半封闭的城市化基尔峡湾(西波罗的海)海岸线上生长的膀胱残骸(Fucus vesiculosus)的元素,稳定碳,氮和硫同位素组成的空间变化已在60多个地点进行了调查。对维氏梭菌的碳氮硫(CNS)化学计量以及C和N稳定同位素特征的分析显示,基尔峡湾的西北部和东南部之间存在显着差异。不同的尺寸分类显示出C:N和C:S比例以及碳同位素组成的部分差异,反映了边界条件在生长过程中的影响。硫同位素组成受海水硫酸盐同化作用的控制,而碳同位素组成反映了地表水组成的差异。有机组织的δN-15值往往是人为因素对峡湾影响的综合监测器。将结果与地表水的成分进行比较。

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