Afton Scott, Kubachka Kevin, Catron Brittany, Caruso Joseph A
University of Cincinnati, University of Cincinnati/Agilent Technologies Metallomics Center of the Americas, Department of Chemistry, Cincinnati, OH 45221-0172, USA.
J Chromatogr A. 2008 Oct 24;1208(1-2):156-63. doi: 10.1016/j.chroma.2008.08.077. Epub 2008 Aug 27.
With an increased awareness and concern for varying toxicities of the different chemical forms of environmental contaminants such as selenium and arsenic, effective methodologies for speciation are paramount. In general, chromatographic methodologies have been developed using a particular detection system and a unique matrix for single element speciation. In this study, a routine method to speciate selenium and arsenic in a variety of "real world" matrices with elemental and molecular mass spectrometric detection has been successfully accomplished. Specifically, four selenium species, selenite, selenate, selenomethionine and selenocystine, and four arsenic species, arsenite, arsenate, monomethlyarsonate and dimethylarsinate, were simultaneously separated using ion-pairing reversed phase chromatography coupled with inductively coupled plasma and electrospray ionization ion trap mass spectrometry. Using tetrabutylammonium hydroxide as the ion-pairing reagent on a C(18) column, the separation and re-equilibration time was attained within 18min. To illustrate the wide range of possible applications, the method was then successfully applied for the detection of selenium and arsenic species found naturally and spiked in river water, plant extract and urine matrices.
随着人们对环境污染物(如硒和砷)不同化学形态的各种毒性的认识和关注不断提高,有效的形态分析方法至关重要。一般来说,色谱分析方法是利用特定的检测系统和独特的基质来进行单一元素的形态分析。在本研究中,已成功完成了一种常规方法,该方法利用元素和分子质谱检测,对各种“实际环境”基质中的硒和砷进行形态分析。具体而言,使用离子对反相色谱结合电感耦合等离子体和电喷雾电离离子阱质谱,同时分离了四种硒形态(亚硒酸盐、硒酸盐、硒代蛋氨酸和硒代胱氨酸)和四种砷形态(亚砷酸盐、砷酸盐、一甲基胂酸和二甲基胂酸)。在C(18)柱上使用氢氧化四丁铵作为离子对试剂,在18分钟内实现了分离和重新平衡时间。为了说明该方法广泛的可能应用,该方法随后成功应用于检测天然存在以及添加到河水、植物提取物和尿液基质中的硒和砷形态。