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Quantification of anthropogenic and geogenic Ce in sewage sludge based on Ce oxidation state and rare earth element patterns

机译:基于CE氧化态和稀土元素模式的污水污泥的人为和造工CE的定量

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摘要

Emissions of Ce from anthropogenic activities (anthropogenic Ce) into urban wastewater systems and the environment result from its widespread industrial use (abrasives, catalysts, nanotechnology). Because Ce in sewage sludge can also be of geogenic origin, the quantification of anthropogenic Ce in sewage sludge remains elusive. In this study, we evaluated the suitability of Ce oxidation state and rare earth element (REE) patterns for the quantification of anthropogenic Ce fractions in sewage sludge. A diverse set of soil samples served to gain baseline information on geogenic Ce. Geogenic Ce in the soils was characterized by high Ce(III) fractions (≥70%) and their REE patterns were comparable to the REE patterns of the upper continental crust. The sewage sludges contained on average ∼80% Ce(IV) (range 18–108%), pointing to the importance of anthropogenic inputs of Ce(IV). The quantification of the anthropogenic Ce fraction based on Ce oxidation state, however, was associated with considerable uncertainty because geogenic and anthropogenic Ce cannot exclusively be assigned to Ce(III) and Ce(IV), respectively. The REE patterns of most sewage sludges indicated a clear enrichment of Ce compared to heavier REE. Based on the assumption that the industrially used Ce is free of (most) other REE, we estimated the fraction of anthropogenic Ce in the sludges based on individual Ce/REE ratios. For the individual sludges the anthropogenic contributions were very variable (10–100%) but consistent fractions were obtained for individual sludges when calculated based on Ce/Dy (dysprosium), Ce/Er (erbium) and Ce/Eu (europium) ratios. Electron microscopy analysis of sludges dominated by anthropogenic Ce revealed that the Ce was mostly contained in nanoscale particles devoid of elements characteristic of Ce-bearing minerals. Thus, anthropogenic Ce contents derived from REE patterns may be used to validate current mass flow models for engineered CeO2 nanoparticles.
机译:从人为活动(人为)的CE排放到城市污水系统和环境源于广泛的工业用途(磨料,催化剂,纳米技术)。因为CE在污水污泥中也可以是造环,所以污水污泥中的人为CE的定量仍然难以捉摸。在该研究中,我们评估了Ce氧化态和稀土元素(REE)模式的适用性,以定量污水污泥中的人为CE分数。多样化的土壤样本,用于获得关于造工型CE的基线信息。土壤中的造环Ce以高Ce(III)分数(≥70%)为特征,并且它们的REE模式与上大陆地壳的REE图案相当。污水沉积含量在平均约~80%Ce(IV)(范围18-108%),指向Ce(IV)的人为输入的重要性。然而,基于Ce氧化态的人为CE级分的定量与相当大的不确定性相关,因为胎生和人为CE不能分别分配给Ce(III)和CE(IV)。与较重的REE相比,大多数污水污泥的REE模式表明CE的清晰富集。基于工业上使用的CE没有(大多数)其他REE的假设,我们估计了基于个体CE / REE比率的裂缝中的人为CE的一部分。对于个体污泥污泥,当基于CE / DY(镝),CE / ER(erbium)和CE / EU / EU / EUS / EU / EUS / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU / EU(铕)比计算时,为单个污泥获得的人为贡献非常可变(10-100%)但是一致的级分。由人为CE主导的电子显微镜分析显示,CE主要包含在含有Ce承载矿物的特征的纳米级粒子中。因此,来自REE图案的人为CE内容物可用于验证用于工程化CEO2纳米颗粒的电流质量流量模型。

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