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利用流动技术和液芯波导毛细管池分光光度检测法,在痕量水平下自动测定六价铀。

Automated determination of uranium(VI) at ultra trace levels exploiting flow techniques and spectrophotometric detection using a liquid waveguide capillary cell.

机构信息

Chemistry Department, University of the Balearic Islands, Cra. Valldemossa km 7.5, 07122, Palma, Spain.

出版信息

Anal Bioanal Chem. 2010 May;397(2):871-8. doi: 10.1007/s00216-010-3600-4. Epub 2010 Mar 17.

Abstract

Rapid and fully automated multisyringe flow-injection analysis (MSFIA) with a multi-pumping flow system (MPFS) coupled to a long path-length liquid waveguide capillary cell (LWCC) is proposed for the determination of uranium(VI) at ultra trace levels. On-line separation and pre-concentration of uranium is carried out by means of a TRU resin. After elution, uranium(VI) is spectrophotometrically detected after reaction with arsenazo-III. Combination of the MSFIA and MPFS techniques with the TRU-resin enables the analysis to be performed in a short time, using large sample volumes and achieving high selectivity and sensitivity levels. A detection limit of 12.6 ng L(-1) (ppt) is reached for a 100-mL sample volume. The versatility of the proposed method also enables pre-concentration of variable sample volumes, enabling application of the analysis to a wide concentration range. Reproducibility of better than 5% and a resin durability of 40 injections should be emphasized. The developed method was successfully applied to different types of environmental sample matrices with recoveries between 95 and 108%.

摘要

提出了一种快速、全自动多进样流动注射分析(MSFIA)方法,该方法采用多泵流系统(MPFS)与长光程液体波导毛细管池(LWCC)耦合,用于测定痕量铀(VI)。在线分离和预浓缩铀是通过 TRU 树脂来实现的。洗脱后,铀(VI)与偶氮胂-III 反应后进行分光光度检测。MSFIA 和 MPFS 技术与 TRU 树脂的结合使得该分析能够在短时间内完成,使用大体积的样品,并实现高选择性和灵敏度。对于 100 毫升的样品体积,检测限达到 12.6ng L(-1)(ppt)。该方法的多功能性还能够对不同体积的样品进行预浓缩,从而使分析能够应用于较宽的浓度范围。应强调的是,该方法的重现性优于 5%,树脂的耐用性可达 40 次注射。所开发的方法成功地应用于不同类型的环境样品基质,回收率在 95%至 108%之间。

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