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首页> 外文期刊>Chemical geology >Evolution of selenium concentrations and speciation in groundwater flow systems: Upper Floridan (Florida) and Carrizo Sand (Texas) aquifers
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Evolution of selenium concentrations and speciation in groundwater flow systems: Upper Floridan (Florida) and Carrizo Sand (Texas) aquifers

机译:地下水流系统中硒浓度和物种形态的演变:上佛罗里达州(佛罗里达州)和卡里佐砂(德克萨斯州)含水层

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Selenium concentrations and speciation were determined in groundwater samples collected from wells along flow paths in the Upper Floridan (Florida) and the Carrizo Sand (Texas) aquifers. Selenium concentrations in groundwaters from both aquifers are low (i.e., nanomolal concentrations) and vary both in magnitude and species [i.e., Se(VI), Se(IV), Se(-II)] distributions along the flow paths. Redox sensitive parameters (i.e., Fe(III), Fe(II), S(-II) dissolved oxygen, Eh) are consistent with oxic and suboxic conditions in and proximal to the recharge zones where Fe(III) reduction buffers the redox state, followed by anoxic/sulfidic conditions further down-gradient along the flow paths where sulfate reduction predominates. Evolving redox conditions, in conjunction with changes in groundwater pH along the flow paths exert important controls on the distribution of Se species in groundwaters from both aquifers. Within the Upper Floridan aquifer, for example, selenate [Se(VI)] and selenite (Se(IV)] predominate in oxic/suboxic groundwaters from near the recharge zone, whereas beyond 32 km, Se(IV) and organic selenide [i.e., Se(-II)] are the chief dissolved forms. The change in Se speciation near the recharge zone coincides with the apparent initiation of Fe(Ill) reduction. Further down-gradient along the flow path, where sulfate reduction buffers the redox conditions, Se(-II) becomes locally important. For the Carrizo Sand aquifer, Se(IV) dominates in groundwater from near the recharge zone, where Se(VI) exhibits variable concentrations and Se(-Il) is generally low and relatively constant. Redox conditions of groundwater from the recharge zone (i.e., 0 to similar to 8 km) vary between oxic and suboxic. However, with flow beyond similar to 8 km, the aquifer becomes confined and dissolved Fe(II) concentrations increase dramatically, suggesting the importance of Fe(III) reduction. In the zone of Fe(III) reduction, Se(IV) is the dominant dissolved Se species, and its coincident rise in concentration with the increasing Fe(II) concentrations suggests Se(IV) release to groundwaters via reductive dissolution of Fe(III) oxides/oxyhydroxides. With flow beyond 41 km, sulfate reduction predominates and pH exceeds 8. These observations suggest that pH induced desorption of Se(VI) from aquifer mineral surface sites may be important, however, mixing of groundwaters from multiple flow paths/line and/or compositional heterogeneity of aquifer sediments may also contribute. Overall, the data are consistent with reductive dissolution of Fe(III) oxides/oxyhydroxides, adsorption/desorption reactions, and mixing of multiple flow lines as exerting important controls on Se concentrations and speciation in groundwater flow systems. (0 2007 Elsevier B.V All rights reserved.
机译:测定了沿上佛罗里达州(佛罗里达州)和卡里佐砂(德克萨斯州)含水层中沿水流路径从井中收集的地下水样品中的硒浓度和形态。两种含水层中地下水中的硒浓度都较低(即纳摩尔浓度),并且沿流径的大小和种类(即Se(VI),Se(IV),Se(-II)]分布均变化。氧化还原敏感参数(即,Fe(III),Fe(II),S(-II)溶解氧,Eh)与补给区及其附近的氧化和亚氧化条件一致,在这些区域中,Fe(III)还原会缓冲氧化还原状态,接着是缺氧/硫化物条件,沿硫酸盐还原作用占主导的流动路径进一步下降。不断变化的氧化还原条件,以及沿流动路径的地下水pH值变化,对两种含水层中地下水中Se的分布具有重要的控制作用。例如,在佛罗里达上层含水层中,补给区附近的含氧/过氧化地下水中硒酸盐[Se(VI)]和亚硒酸盐(Se(IV)]占​​主导,而Se(IV)和有机硒化物[32]则超过32 km。 ,Se(-II)]是主要的溶解形式,补给区附近Se形态的变化与Fe(Ill)还原的表观起始相吻合,沿流路进一步下降,其中硫酸盐还原缓冲了氧化还原条件,Se(-II)在当地变得重要,对于Carrizo砂含水层来说,Se(IV)在补给区附近的地下水中占主导地位,Se(VI)的浓度可变,而Se(-II)通常较低且相对恒定。补给区地下水的氧化还原条件(即0到约8 km)在有氧和亚缺氧之间变化,但是,当流量超过约8 km时,含水层受到限制,溶解的Fe(II)浓度急剧增加,表明还原Fe(III)的重要性。 e(III)还原,Se(IV)是主要溶解的Se物种,其浓度随Fe(II)浓度的增加而重合上升,表明Se(IV)通过还原性溶解Fe(III)氧化物/羟基氧化物释放到地下水中。在流量超过41 km时,硫酸盐还原作用占主导地位,pH值超过8。这些观察结果表明,pH诱导的Se(VI)从含水层矿物表面位置的解吸可能很重要,但是,混合来自多个流动路径/管线和/或成分的地下水可能很重要。含水层沉积物的非均质性也可能有贡献。总的来说,这些数据与Fe(III)氧化物/羟基氧化物的还原溶解,吸附/解吸反应以及多条流线的混合一致,从而对地下水流系统中的硒浓度和形态形成了重要的控制作用。 (0 2007 Elsevier B.V保留所有权利。

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