Australian Centre for Research on Separation Science (ACROSS), School of Chemistry, Faculty of Science Engineering and Technology, University of Tasmania, Hobart, Tasmania 7001, Australia.
Anal Chim Acta. 2013 Jun 5;781:80-7. doi: 10.1016/j.aca.2013.03.027. Epub 2013 Mar 26.
A novel capillary electrophoresis (CE) approach has been developed for the simultaneous rapid separation and identification of common environmental inorganic anions and cations from a single sample injection. The method utilised a sequential injection-capillary electrophoresis instrument (SI-CE) with capacitively-coupled contactless conductivity detection (C(4)D) constructed in-house from commercial-off-the-shelf components. Oppositely charged analytes from a single sample plug were simultaneously injected electrokinetically onto two separate capillaries for independent separation and detection. Injection was automated and may occur from a syringe or be directly coupled to an external source in a continuous manner. Software control enabled high sample throughput (17 runs per hour for the target analyte set) and the inclusion of an isolation valve allowed the separation capillaries to be flushed, increasing throughput by removing slow migrating species as well as improving repeatability. Various environmental and industrial samples (subjected only to filtering) were analysed in the laboratory with a 3 min analysis time which allowed the separation of 23 inorganic and small organic anions and cations. Finally, the system was applied to an extended automated analysis of Hobart Southern Water tap water for a period of 48 h. The overall repeatability of the migration times of a 14 analyte standard sample was less than 0.74% under laboratory conditions. LODs ranged from 5 to 61 μg L(-1). The combination of automation, high confidence of peak identification, and low limits of detection make this a useful system for the simultaneous identification of a range of common inorganic anions and cations for discrete or continuous monitoring applications.
一种新型毛细管电泳(CE)方法已经被开发出来,用于从单个样品注入中同时快速分离和鉴定常见的环境无机阴离子和阳离子。该方法利用了一种顺序注射毛细管电泳仪(SI-CE),该仪器采用了商业现货组件构建的电容耦合非接触式电导检测(C(4)D)。来自单个样品塞的带相反电荷的分析物通过电动方式同时注入到两个单独的毛细管中,进行独立的分离和检测。注入是自动化的,可以来自注射器,也可以以连续的方式直接与外部源耦合。软件控制实现了高样品通量(对于目标分析物集,每小时可进行 17 次运行),并且隔离阀的存在允许分离毛细管被冲洗,通过去除缓慢迁移的物质以及提高重复性来提高吞吐量。在实验室中,对各种环境和工业样品(仅经过过滤)进行了分析,分析时间为 3 分钟,允许分离 23 种无机和小分子阴离子和阳离子。最后,该系统被应用于对霍巴特南部自来水进行扩展的自动化分析,持续时间为 48 小时。在实验室条件下,14 种分析物标准样品的迁移时间的整体重复性小于 0.74%。LOD 范围从 5 到 61μg/L。自动化、峰识别置信度高和低检测限的结合,使得该系统成为用于离散或连续监测应用中同时鉴定一系列常见无机阴离子和阳离子的有用系统。