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首页> 外文期刊>Chemical geology >Trace metal concentration and partitioning in the first 1.5 m of hydrothermal vent plumes along the Mid-Atlantic Ridge: TAG, Snakepit, and Rainbow
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Trace metal concentration and partitioning in the first 1.5 m of hydrothermal vent plumes along the Mid-Atlantic Ridge: TAG, Snakepit, and Rainbow

机译:大西洋中脊沿热液喷口前1.5 m的痕量金属浓度和分配:TAG,Snakepit和Rainbow

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摘要

To determine the significance of metal fluxes from hydrothermal vents, understanding the speciation, reactivity, and possible transformations of metals and metal sulfides within the hydrothermal plume is critical. In this study, we measure the concentration and partitioning of trace metals (Fe, Mn, Cu, Cd, Co, Pb, Ni) and sulfide phases within the first 1.5 m of the rising plume at three vent fields (TAG, Snakepit, and Rainbow) along the Mid-Atlantic Ridge. A HCl/HNO3 leaching method was used to differentiate metals present in metal mono-sulfides from those in pyrite and chalcopyrite. At all three vent sites, Mn and Fe are primarily in the <0.2 mu m (filtered) portion, whereas Cu, Co, Cd, and Pb are mainly in the unfiltered fraction. Significant concentrations of HNO3-extractable metals were found in the <0.2 mu m fraction at all three vent sites, indicating that they likely exist in a recalcitrant nanoparticulate phase such as pyrite or chalcopyrite. At TAG and Snakepit, Cu is correlated with Co, as Co enters into chalcopyrite and other CuFeS phases and Zn is correlated with Cd and Pb as they form discretemetal sulfide phases. At Rainbow, Zn, Cd, and Pb are correlated, but Cu and Co are not correlated. The Rainbow data are consistent with the higher metal to sulfide ratio found at Rainbow. These speciation differences are significant as both mineral type and size will affect the amount of metal transported from the vent site and its availability for biogeochemical processes. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了确定热液喷口中金属通量的重要性,了解热液羽流中金属和金属硫化物的形态,反应性以及可能的转变至关重要。在这项研究中,我们测量了三个排烟口区域(TAG,Snakepit和彩虹)沿大西洋中脊。使用HCl / HNO3浸出法将金属单硫化物中的金属与黄铁矿和黄铜矿中的金属区分开。在所有三个排气孔处,Mn和Fe主要位于<0.2微米(过滤的)部分,而Cu,Co,Cd和Pb主要位于未过滤的部分。在所有三个排气孔位置的<0.2微米级分中都发现了HNO3可萃取金属的显着浓度,表明它们可能存在于顽固的纳米颗粒相中,例如黄铁矿或黄铜矿。在TAG和Snakepit,当Co进入黄铜矿相和其他CuFeS相时,Cu与Co相关,而当它们形成离散的金属硫化物相时,Zn与Cd和Pb相关。在Rainbow处,Zn,Cd和Pb相关,而Cu和Co不相关。 Rainbow数据与Rainbow处发现的较高的金属与硫化物比率一致。这些形态差异非常明显,因为矿物的类型和大小都会影响从喷口处运出的金属量及其对生物地球化学过程的可用性。 (C)2015 Elsevier B.V.保留所有权利。

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