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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Light fiber optic probe for measuring internal breakthrough of rare earth ion-labelled microspheres in porous media under unsaturated conditions
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Light fiber optic probe for measuring internal breakthrough of rare earth ion-labelled microspheres in porous media under unsaturated conditions

机译:用于测量非饱和条件下多孔介质中稀土离子标记微球内部穿透的光纤探针

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摘要

Application of minimally invasive probes for measuring fluorescent labelled colloids inside sand columns resulted in internal breakthrough curves at given points, that provided information about mass distributions without disrupting the column. Until now, light fiber optic probes were used in combination with organic fluorophores like fluoresceine or rhodamine, which have inherent disadvantage, such as comparably small Stoke's shifts and quenching at high concentrations. These may be overcome using rare earth ion complexes to label colloidal particles like microspheres (MS). Furthermore, these dyes have large fluorescent lifetimes compared to organic fluorophores, which readily allows the elimination of background fluorescence using time-resolved spectroscopy. We demonstrate the novel application of rare earth ionlabelled microspheres as colloidal tracers in column experiments under unsaturated conditions in porous media in coupling with a detection setup based on internal light fiber optic probes. Differences in mass budgets between internal detection and detection at the outlet were confirmed afterwards by invasive refurbishment of the column matrix. (c) 2008 Elsevier B.V. All rights reserved.
机译:应用微创探针测量砂柱内部荧光标记的胶体会在给定点产生内部穿透曲线,从而提供有关质量分布的信息而不会破坏色谱柱。迄今为止,光纤探针已与有机荧光团(如荧光素或若丹明)结合使用,它们具有固有的缺点,例如相对较小的斯托克频移和高浓度淬灭。使用稀土离子络合物标记胶体颗粒(如微球(MS))可以克服这些问题。此外,与有机荧光团相比,这些染料具有较长的荧光寿命,使用时间分辨光谱法可以轻松消除背景荧光。我们展示了稀土离子标记的微球作为胶体示踪剂在多孔介质中不饱和条件下的柱实验中的新应用,并结合了基于内部光纤探头的检测装置。之后,通过侵入性翻新色谱柱矩阵,确认了内部检测与出口检测之间的质量预算差异。 (c)2008 Elsevier B.V.保留所有权利。

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