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Smart thorium and uranium determination exploiting renewable solid-phase extraction applied to environmental samples in a wide concentration range

机译:利用可再生固相萃取技术智能测定or和铀,适用于宽浓度范围的环境样品

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摘要

A smart fully automated system is proposed for determination of thorium and uranium in a wide concentration range, reaching environmental levels. The hyphenation of lab-on-valve (LOV) and multisyringe flow injection analysis (MSFIA), coupled to a long path length liquid waveguide capillary cell, allows the spectrophotometric determination of thorium and uranium in different types of environmental sample matrices achieving high selectivity and sensitivity levels. Online separation and preconcentration of thorium and uranium is carried out by means of Uranium and TEtraValents Actinides resin. The potential of the LOV-MSFIA makes possible the full automation of the system by the in-line regeneration of the column and its combination with a smart methodology is a step forward in automation. After elution, thorium(IV) and uranium(VI) are spectrophotometrically detected after reaction with arsenazo-III. We propose a rapid, inexpensive, and fully automated method to determine thorium(IV) and uranium(VI) in a wide concentration range (0-1,200 and 0-2,000 μg L ~(-1) Th and U, respectively). Limits of detection reached are 5.9 ηg L~(-1) of uranium and 60 ηg L~(-1) of thorium. Different water sample matrices (seawater, well water, freshwater, tap water, and mineral water), and a channel sediment reference material which contained thorium and uranium were satisfactorily analyzed with the proposed method.
机译:提出了一种智能的全自动系统,用于测定宽浓度范围内的environmental和铀,达到环境水平。阀上实验室(LOV)和多注射器流动注射分析(MSFIA)的联用,再加上长程长度的液体波导毛细管池,可以分光光度法测定不同类型的环境样品基质中的and和铀,从而实现了高选择性和高选择性。敏感性水平。 separation和铀的在线分离和预浓缩是通过铀和TEtraValents Act系树脂进行的。 LOV-MSFIA的潜力通过色谱柱的在线再生实现了系统的完全自动化,将其与智能方法相结合是自动化迈出的一步。洗脱后,与ar三唑-Ⅲ反应后,用分光光度法检测th(Ⅳ)和铀(Ⅵ)。我们提出了一种快速,廉价且全自动的方法来测定宽浓度范围(分别为0-1,200和0-2,000μgL〜(-1)Th和U)中的((IV)和铀(VI)。检出限为5.9ηgL〜(-1)铀和60ηgL〜(-1)th。用所提出的方法令人满意地分析了不同的水样基质(海水,井水,淡水,自来水和矿泉水)以及含有sediment和铀的河道沉积物参考物质。

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