Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University, 54124 Thessaloniki, Greece.
Molecules. 2020 Mar 29;25(7):1569. doi: 10.3390/molecules25071569.
An innovative automatic purge-and-trap (P&T) system coupled with fluorimetric sequential injection (SI), for the on-line separation and preconcentration of volatile compounds, is presented. The truth of concept is demonstrated for the ammonium fluorimetric determination in environmental water samples with complex matrices without any pretreatment. The P&T flow system comprises a thermostated purge-vessel where ammonium is converted into gaseous ammonia and a trap-vessel for ammonia collection. This configuration results in matrix removal as well as analyte preconcentration, avoiding membrane-associated problems. All the main parameters affecting the efficiency of a P&T system were studied and optimized. The proposed method is characterized by a working range of 2.7-150.0 μg L of NH, with a detection and quantification limit of 0.80 and 2.66 μg L, respectively, for a 10-mL sample consumption. The accuracy of the method was assessed by recovery assays in seawater, estuarine, and lake water samples as well as by the analysis of standard reference material.
介绍了一种新颖的自动吹扫-捕集(P&T)系统,与荧光顺序注射(SI)联用,用于在线分离和浓缩挥发性化合物。该系统通过在线预浓缩和选择性分离,在无需任何预处理的情况下,可直接测定环境水样中的痕量铵。该 P&T 流路系统由恒温吹扫-容器和捕集-容器组成,在容器中,铵被转化为气态氨并被收集。这种配置不仅可以去除基质,还可以进行分析物预浓缩,从而避免了与膜相关的问题。研究并优化了影响 P&T 系统效率的所有主要参数。该方法的工作范围为 2.7-150.0 μg L 的 NH,对于 10-mL 样品消耗,检测限和定量限分别为 0.80 和 2.66 μg L。通过对海水、河口和湖水样品的回收试验以及对标准参考物质的分析,评估了该方法的准确性。