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FE-SEM 与 EDS 检测器观察到再生矿区土壤中 Ni、Pb 和 Zn 的物理分布。

Physical distribution of Ni, Pb and Zn in reclaimed mine soils observed by FE-SEM with an EDS detector.

机构信息

Department of Plant Biology and Soil Science, Faculty of Biology, University of Vigo, As Lagoas-Marcosende, 36310, Vigo, Pontevedra, Spain,

出版信息

Environ Sci Pollut Res Int. 2015 Sep;22(17):13372-81. doi: 10.1007/s11356-015-4587-3. Epub 2015 May 5.

Abstract

The aim of this study was to physically demonstrate the associations between Ni, Pb and Zn and the different soil components. To achieve this, several soil samples were observed by field emission-scanning electron microscope (FE-SEM) equipped with an energy dispersive spectrometer (EDS) detector. The samples came from mine sites vegetated and/or amended with wastes (sewage sludges and paper mill residues). The concentrations of metals in the different soil fractions were quantified by a chemical sequential extraction in a previous study. The sorption capacity of the soils was evaluated with sorption experiments using the batch method. We corroborated the results obtained by the sequential extraction of metals as well as the sorption experiments with the observations from the FE-SEM with the EDS. We physically observed the associations between Ni, Pb and Zn and oxides, organic matter and clays. We also observed PbCaCO3 crystals in one of the soils, presumably formed during the sorption experiment. As it is not possible to know with complete certainty how Pb was retained by calcium in this soil by only using chemical methods, the use of microscopic techniques is crucial to ascertain how metals are associated with the different soil fractions.

摘要

本研究的目的是通过场发射扫描电子显微镜(FE-SEM)结合能谱仪(EDS)检测器对不同土壤成分与 Ni、Pb 和 Zn 之间的关联进行物理观察。这些土壤样本来自矿区,这些矿区的土壤要么被植被覆盖,要么被废物(污水污泥和造纸厂残渣)改良。在之前的研究中,通过化学连续提取定量了不同土壤部分中的金属浓度。通过分批吸附实验评估了土壤的吸附能力。我们通过金属连续提取和吸附实验的结果与 FE-SEM 和 EDS 的观察结果进行了验证。我们观察到 Ni、Pb 和 Zn 与氧化物、有机物和粘土之间的关联。我们还观察到其中一种土壤中存在 PbCaCO3 晶体,这些晶体可能是在吸附实验过程中形成的。由于仅使用化学方法无法完全确定该土壤中 Pb 是如何被 Ca 保留的,因此使用微观技术对于确定金属与不同土壤部分的关联至关重要。

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