首页> 外文期刊>Marine Chemistry >Porewater geochemistry in a Galician Ria (NW Iberian Peninsula): Implications for benthic fluxes of dissolved trace elements (Co, Cu, Ni, Pb, V, Zn)
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Porewater geochemistry in a Galician Ria (NW Iberian Peninsula): Implications for benthic fluxes of dissolved trace elements (Co, Cu, Ni, Pb, V, Zn)

机译:加利西亚Ria(西北伊比利亚半岛)的孔隙水地球化学:对溶解的痕量元素(Co,Cu,Ni,Pb,V,Zn)底栖通量的影响

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摘要

The geochemical behaviour of dissolved trace elements in sediment interstitial waters from the Vigo Ria (Galicia, Spain) has been determined. Dissolved concentrations in the pore waters ranged between 1.7-23.2 nM for Co, 1.5-131 nM for Cu, 19.5-159 nM for Ni, 0.02-19.3 nM for Pb, 5.4-260 nM for V and 0.2-241 nM for Zn. Values for Cu, Pb and Zn were highest along the axis of the ria, whereas Co, Ni, V and Zn were more abundant in the area of the industrialised shipyards. The metal profiles were affected by sedimentary redox processes, which were monitored by means of Mn and Fe concentrations and pore water pH. Dissolved Cu and V had relatively high concentrations in the oxic surface layer and their concentrations decreased with depth, although in deeper layers concentrations of V increased in association with the presence of dissolved organic ligands. Cobalt and Ni followed the behaviour of Mn, although they were depleted in surface oxic layers their concentrations increased in the Mn reduction zone. Lead and Zn had highly irregular profiles because of their lower redox-sensitivity and their complexation with organic material is not as pronounced as that for Cu. Dissolved metal concentrations in overlying waters oscillated between 0.7-2.1 nM for Co, 5.5-50.5 nM for Cu, 4.6-10.0 nM for Ni, 1.4-9.1 for Pb. 5.7-28.5 nM for V and 14.6-66.5 nM for Zn. Using Fick's first law of diffusion, the benthic fluxes of the elements varied between 0.03-0.24 nmol cm~(-2) y~(-1) for Co, (-0.02)-1.11 nmol cm~(-2)y~(-1) for Cu, 0,16-1.70 nmol cm~(-2) y~(-1) for Ni,(-0.14)-0.03 nmol cm~(-2)y~(-1) for Pb, 1.52-4.35 nmol cm~(-2) y~(-1) for V and (- 0.37)-0.90 nmol cm~(-2) y~(-1) for Zn. Fluxes were higher in the ria axis for Cu, Ni, V and Zn and in the shipyard area for Co, while Pb fluxes were negligible at all the stations. This work has demonstrated that the redox geochemistry and diagenetic processes of the sediments and pore waters control the benthic fluxes in the Vigo Ria. When the upper layer of the sediment is oxic a high exportation of Cu and V to the overlying waters occurs and during less oxidizing conditions of this layer, Ni and Co exportation from the pore water increases. Dissolved trace metal benthic fluxes to the Vigo Ria were significant for most of the metals (Cu, Ni and V) and were of the same order of magnitude to the riverine inputs.
机译:已经确定了来自Vigo Ria(西班牙加利西亚)的沉积物间质水中溶解的微量元素的地球化学行为。孔隙水中的溶解浓度介于Co的1.7-23.2 nM,Cu的1.5-131 nM,Ni的19.5-159 nM,Pb的0.02-19.3 nM,V的5.4-260 nM和Zn的0.2-241 nM之间。 Cu,Pb和Zn的值沿ria轴最高,而Co,Ni,V和Zn的值在工业化造船厂区域更为丰富。金属剖面受到沉积氧化还原过程的影响,该过程通过Mn和Fe浓度以及孔隙水pH值进行监测。尽管在较深的层中,随着溶解的有机配体的存在,V的浓度增加,但溶解的Cu和V在含氧表面层中的浓度较高,并且其浓度随深度降低。钴和镍遵循锰的行为,尽管它们在表面氧化层中被耗尽,但它们在锰还原区的浓度却增加了。铅和锌具有高度不规则的轮廓,因为它们的氧化还原敏感性较低,并且它们与有机材料的络合程度不如铜。上层水中的溶解金属浓度在Co的0.7-2.1 nM,Cu的5.5-50.5 nM,Ni的4.6-10.0 nM,Pb的1.4-9.1之间波动。 V为5.7-28.5 nM,锌为14.6-66.5 nM。根据Fick的第一扩散定律,元素的底流通量在Co的0.03-0.24 nmol cm〜(-2)y〜(-1)之间变化,(-0.02)-1.11 nmol cm〜(-2)y〜( -1)对于Cu,0.16-1.70 nmol cm〜(-2)y〜(-1)对于Ni,(-0.14)-0.03 nmol cm〜(-2)y〜(-1)对于Pb,1.52对于V为-4.35 nmol cm〜(-2)y〜(-1),对于Zn为(-0.37)-0.90 nmol cm〜(-2)y〜(-1)。 Cu,Ni,V和Zn的ria轴通量较高,Co的船厂区域通量较高,而所有站点的Pb通量均可以忽略不计。这项工作表明,沉积物和孔隙水的氧化还原地球化学和成岩作用控制着维哥里亚河的底栖通量。当沉积物的上层是有氧的时,会发生大量铜和钒向上层水的排放,并且在该层的氧化程度较低的情况下,镍和钴从孔隙水中的排放也会增加。对于大多数金属(铜,镍和钒),到维哥里亚河的溶解的痕量底栖金属通量是显着的,并且与河流输入的数量级相同。

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