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Metal transfer budgets in a Mediterranean marine environment subjected to natural and anthropogenic inputs: case of the Mejerda River Delta (Gulf of Tunis, northern Tunisia)

机译:受自然和人为因素影响的地中海海洋环境中的金属转移预算:梅杰达河三角洲(突尼斯北部海湾,突尼斯)为例

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摘要

Deltaic sediments are important for biogeochemical metal cycling since they are hotspots for metal inputs. In addition, they are potential sites for diagenetic processes leading to either the burial of inorganic contaminants or their release. Diffusive fluxes of certain metals (Fe, Mn, Pb, Zn, Cu and Cd) in the sediments of the Mejerda River Delta (MRD) (Gulf of Tunis, Tunisia) were quantified by modeling the available concentration profiles in the pore water. The metals' burial and sedimentation fluxes were also calculated using both the asymptotic concentrations of available metal profiles and sediment trap results. These fluxes were assembled with the exchange fluxes at the sediment-water interface in order to develop complete metal transfer budgets. The results showed that budgets of Cu and Zn are almost neutral. The sediment appears to be a good trap for iron since its average burial flux at the three studied stations is about 332.6gm(-2)year(-1). Organic matter degradation, carbonate dissolution, and oxyhydroxide reduction are the main mechanisms which accelerate the release of metals associated with the suspended particle matter once they reach the pore water in the seabed.
机译:三角洲沉积物对于生物地球化学金属循环很重要,因为它们是金属输入的热点。此外,它们是成岩过程的潜在场所,导致埋藏无机污染物或将其释放。通过对孔隙水中可用的浓度分布图进行建模,可以量化梅耶达河三角洲(MRD)(突尼斯湾)沉积物中某些金属(Fe,Mn,Pb,Zn,Cu和Cd)的扩散通量。还使用可用金属剖面的渐近浓度和沉积物陷阱结果来计算金属的埋藏和沉积通量。这些通量在沉积物-水界面处与交换通量组合在一起,以制定完整的金属转移预算。结果表明,铜和锌的预算几乎是中性的。沉积物似乎是铁的良好陷阱,因为三个研究站的平均埋藏通量约为332.6gm(-2)year(-1)。有机物降解,碳酸盐溶解和羟基氧化还原是主要的机制,一旦它们到达海床的孔隙水中,就会加速与悬浮颗粒物有关的金属的释放。

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