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Combining trace elements micro-analysis in deposited dredged sediments: EPMA and μ-XRF analysis

机译:组合微量元素微分析在沉积的疏浚沉积物中:EPMA和μ-XRF分析

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Since deposited dredged sediments are rich in metallic contaminants, they present a risk for environment. This work aims to study dredged sediments chemical composition, identify metal-carrier minerals and understand their mobility. Combining chemical and spectroscopic techniques at multi-scale for an integrative approach of trace elements (zinc, lead, iron) behaviour is therefore necessary. The global mineralogy and the chemistry of the sediment were determined by X-ray diffraction and fluorescence (XRF), respectively. Zn and Pb enriched fractions were separated using a sequential chemical extraction procedure and measured by inductively coupled plasma atomic emission and mass spectroscopy. Microanalyses using scanning electron microscopy (SEM), electron microprobe microanalysis (EPMA), combined with synchrotron radiation X-ray fluorescence (μ-XRF) were carried out to characterize mineralogical phases and identify Zn and Pb carrier minerals. Iron oxyhydroxides and iron sulphides were consistently identify as Zn and Pb carriers. The assumption that carbonate fraction was the major Zn carried phase, as demonstrated by chemical extraction results, was not verified by EPMA or μ-XRF.
机译:由于沉积的疏浚沉积物富含金属污染物,因此它们呈现了环境的风险。这项工作旨在研究疏浚沉积物化学成分,鉴定金属载体矿物质并理解其流动性。因此,需要将化学和光谱技术组合在多尺度中,以进行微量化元素(锌,铅,铁)行为的一致方法。通过X射线衍射和荧光(XRF)测定全局矿物学和沉积物的化学。使用顺序化学提取方法分离Zn和PB富集的级分,并通过电感耦合等离子体原子发射和质谱测量。进行使用扫描电子显微镜(SEM),电子微升压微量分析(EPMA)与同步辐射X射线荧光(μ-XRF)结合的微脉细胞,以表征矿物学各相,并鉴定Zn和Pb载体矿物质。羟基氧化铁和铁硫化物始终鉴定为Zn和Pb载体。碳酸酯馏分是主要Zn载阶段的假设,通过化学提取结果证明,未通过EPMA或μ-XRF验证。

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