Mediterranean Institute of Advanced Studies, Department of Global Change Research, 07190 Esporles, Spain.
Talanta. 2012 Sep 15;99:349-56. doi: 10.1016/j.talanta.2012.05.063. Epub 2012 Jun 5.
The recently proposed concept of automatic in-syringe dispersive liquid-liquid microextraction was successfully applied to the determination of copper in environmental water samples. Bathocuproine was added to the organic phase as a selective reagent, resulting in the formation of a complex with copper. Dispersion was achieved by aspiration of the organic phase and then the watery phase into the syringe as rapidly as possible. After aggregation of the solvent droplets at the head of the syringe, the organic phase was pushed into a liquid waveguide capillary cell for highly sensitive spectrophotometric detection. The entire analytical procedure was carried out automatically on a multisyringe flow-injection analysis platform and a copper determination was accomplished in less than 220 s. A limit of detection of 5 nmol L(-1) was achieved at an extraction efficiency >90% and a preconcentration factor of 30. A linear working range for concentrations of up to 500 nmol L(-1) and an average standard deviation of 7% in peak height were found. The method proved to be well-suited for the determination of copper in water samples, with an average analyte recovery of 100.6%.
最近提出的自动注射器内分散液相微萃取的概念被成功地应用于环境水样中铜的测定。浴铜灵被添加到有机相中作为选择性试剂,与铜形成配合物。通过尽可能快地将有机相和水相吸入注射器中实现分散。在注射器头部,溶剂液滴聚集后,将有机相推入液体波导毛细管池进行高灵敏度分光光度检测。整个分析过程在多注射器流动注射分析平台上自动进行,铜的测定在不到 220 秒内完成。在萃取效率>90%和预浓缩因子为 30 的情况下,检测限达到 5 nmol L(-1)。发现浓度高达 500 nmol L(-1)的线性工作范围和峰高平均标准偏差为 7%。该方法被证明非常适合水样中铜的测定,平均分析物回收率为 100.6%。