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X 射线吸收精细结构证据表明,法国法兰西岛巴黎下游塞纳河悬浮物中的主要锌物种为非晶态硫化锌。

X-ray absorption fine structure evidence for amorphous zinc sulfide as a major zinc species in suspended matter from the Seine River downstream of Paris, Ile-de-France, France.

机构信息

Laboratoire des Sciences du Climat et de l'Environnement (LSCE/IPSL), UMR 1572 (CEA/CNRS/UVSQ), Domaine du CNRS, Gif-sur-Yvette, France.

出版信息

Environ Sci Technol. 2012 Apr 3;46(7):3712-20. doi: 10.1021/es2041652. Epub 2012 Mar 14.

Abstract

Zinc is one of the most widespread trace metals (TMs) in Earth surface environments and is the most concentrated TM in the downstream section of the Seine River (France) due to significant anthropogenic input from the Paris conurbation. In order to better identify the sources and cycling processes of Zn in this River basin, we investigated seasonal and spatial variations of Zn speciation in suspended particulate matter (SPM) in the oxic water column of the Seine River from upstream to downstream of Paris using synchrotron-based extend X-ray absorption fine structure (EXAFS) spectroscopy at the Zn K-edge. First-neighbor contributions to the EXAFS were analyzed in SPM samples, dried and stored under a dry nitrogen atmosphere or under an ambient oxygenated atmosphere. We found a sulfur first coordination environment around Zn (in the form of amorphous zinc sulfide) in the raw SPM samples stored under dry nitrogen vs an oxygen first coordination environment around Zn in the samples stored in an oxygenated atmosphere. These findings are supported by scanning electron microscopy and energy dispersive X-ray spectrometry observations. Linear combination fitting of the EXAFS data for SPM samples, using a large set of EXAFS spectra of Zn model compounds, indicates dramatic changes in the Zn speciation from upstream to downstream of Paris, with amorphous ZnS particles becoming dominant dowstream. In contrast, Zn species associated with calcite (either adsorbed or incorporated in the structure) are dominant upstream. Other Zn species representing about half of the Zn pool in the SPM consist of Zn-sorbed on iron oxyhydroxides (ferrihydrite and goethite) and, to a lesser extent, Zn-Al layered double hydroxides, Zn incorporated in dioctahedral layers of clay minerals and Zn sorbed to amorphous silica. Our results highlight the importance of preserving the oxidation state in TM speciation studies when sampling suspended matter, even in an oxic water column.

摘要

锌是地球表面环境中分布最广泛的痕量金属(TMs)之一,由于巴黎城市群的大量人为输入,它是塞纳河(法国)下游段最集中的 TM。为了更好地识别该流域 Zn 的来源和循环过程,我们使用同步辐射扩展 X 射线吸收精细结构(EXAFS)光谱法在锌 K 边缘,研究了巴黎上下游塞纳河好氧水柱中悬浮颗粒物(SPM)中 Zn 形态的季节性和空间变化。在干燥氮气或含氧大气中干燥和储存的 SPM 样品中分析了 EXAFS 中第一近邻对的贡献。我们发现,在干燥氮气下储存的原始 SPM 样品中,Zn 周围存在硫第一配位环境(以无定形锌硫化物的形式),而在含氧大气中储存的样品中,Zn 周围存在氧第一配位环境。这些发现得到了扫描电子显微镜和能量色散 X 射线光谱观察的支持。使用大量 Zn 模型化合物的 EXAFS 光谱对 SPM 样品的 EXAFS 数据进行线性组合拟合表明,Zn 形态从巴黎上下游发生了剧烈变化,无定形 ZnS 颗粒在下游占主导地位。相比之下,与方解石(吸附或掺入结构中)相关的 Zn 物种在上游占主导地位。其他 Zn 物种约占 SPM 中 Zn 库的一半,由铁氢氧化物(水铁矿和针铁矿)上吸附的 Zn 和(程度较小)Zn-Al 层状双氢氧化物、粘土矿物八面体层中掺入的 Zn 和无定形二氧化硅上吸附的 Zn 组成。我们的结果强调了在采样悬浮物质时,即使在好氧水柱中,保存 TM 形态研究中氧化态的重要性。

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