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Metal Speciation in Anoxic Sediments: When Sulfides Can Be Construed as Oxides

机译:缺氧沉积物中的金属形态:当硫化物可以被解释为氧化物时

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摘要

Metal speciation in aquatic sediments is often characterized using wet chemical sequential extraction techniques. However, these methods are operationally defined and subject to artifacts, particularly when dealing with anoxic sediments, in which metal sulfide precipitates are likely to occur. Using X-ray absorption spectroscopy (XAS) and acid-volatile sulfide (AVS) analysis, we evaluated the effectiveness of one of the most widely used sequential extraction protocols, the Tessier method, at determining Zn and Pb speciation in anoxic wetland sediments. Sequential extraction results significantly underestimated the amount of Zn associated with sulfide phases as compared to the other two approaches. XAS analysis of ZnS amended sediments indicates that the most likely source of this conflict is an early dissolution of amorphous metal sulfide phases during the sequential extraction step corresponding to the extraction of iron and manganese oxides. The reagent mixture used in this step, hydroxylamine hydrochloride-HCl, is widely used in other sequential extraction protocols, including the BCR method, limiting their application to anoxic sediments. For this reason, current sequential extraction techniques should only be used on anoxic sediments with caution, and/or in conjunction with complementary approaches to assess metal speciation.
机译:通常使用湿化学顺序提取技术来表征水生沉积物中的金属形态。但是,这些方法在操作上已定义并且容易受到伪影的影响,尤其是在处理缺氧沉积物时,其中可能会发生金属硫化物沉淀。使用X射线吸收光谱(XAS)和酸挥发性硫化物(AVS)分析,我们评估了最广泛使用的顺序萃取方案之一的Tessier方法在确定缺氧湿地沉积物中Zn和Pb形态方面的有效性。与其他两种方法相比,顺序提取结果显着低估了与硫化物相相关的Zn量。 ZnS修正沉积物的XAS分析表明,这种冲突的最可能原因是在与铁和锰氧化物的提取相对应的连续提取步骤中,非晶态金属硫化物相的早期溶解。此步骤中使用的试剂混合物,盐酸羟胺盐酸盐,广泛用于其他顺序萃取方案中,包括BCR方法,从而限制了其在缺氧沉积物中的应用。因此,当前的顺序提取技术只能谨慎地用于缺氧沉积物,和/或与评估金属形态的辅助方法结合使用。

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