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Sorption of Eu(III) on Eibenstock granite studied by µTRLFS: A novel spatially-resolved luminescence-spectroscopic technique

机译:µTRLFS研究Eu(III)在Eibenstock花岗岩上的吸附:一种新型的空间分辨发光光谱技术

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摘要

In this study a novel technique, micro-focus time-resolved laser-induced luminescence spectroscopy (µTRLFS) is presented to investigate heterogeneous systems like granite (mainly consisting of quartz, feldspar, and mica), regarding their sorption behavior. µTRLFS is a spatially-resolved upgrade of conventional TRLFS, which allows point-by-point analysis of single minerals by reducing the beam size of the analytic laser beam to below the size of mineral grains. This provides visualization of sorption capacity as well as speciation of a luminescent probe, here Eu3+. A thin-section of granitic rock from Eibenstock, Saxony, Germany was analyzed regarding its mineralogy with microprobe X-ray fluorescence (µXRF) and electron probe microanalysis (EPMA). Afterwards, it was reacted with 5.0 × 10−5 mol/L Eu3+ at pH 8.0 and uptake was quantified by autoradiography. Finally, the µTRLFS studies were conducted. The results clearly show that the materials interact differently with Eu3+, and often even on one mineral grain different speciations can be found. Alkali-feldspar shows very high uptake, with an inhomogeneous distribution, and intermediate sorption strength. On quartz uptake is almost 10-fold lower, while the complexation strength is higher than on feldspar. This may be indicative of adsorption only at surface defect sites, in accordance with low hydration of the observed species.
机译:在这项研究中,提出了一种新技术,即微焦点时间分辨激光诱导发光光谱(µTRLFS),用于研究花岗岩(主要由石英,长石和云母组成)等异质系统的吸附行为。 µTRLFS是传统TRLFS的空间解析升级版,它可以通过将分析激光束的光束尺寸减小到矿物晶粒的尺寸以下来对单个矿物进行逐点分析。这提供了可视化的吸附能力以及发光探针(此处为Eu 3 + )的形态。使用微探针X射线荧光(µXRF)和电子探针显微分析(EPMA)分析了德国萨克森州艾本斯托克(Eibenstock)的花岗岩薄片的矿物学特征。然后,使其与5.0×10 -5 mol / L Eu 3 + 在pH 8.0下反应,并通过放射自显影定量。最后,进行了µTRLFS研究。结果清楚地表明,这些物质与Eu 3 + 的相互作用不同,而且即使在一种矿物颗粒上也常常可以找到不同的物种。碱长石显示出非常高的吸收率,分布不均匀,并且具有中等的吸附强度。石英的吸收率几乎低10倍,而络合强度却比长石高。根据观察到的物质的低水合作用,这可能表明仅在表面缺陷部位吸附。

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