Michalke B, Schramel P
GSF Forschungszentrum für Umwelt und Gesundheit GmbH, Institut für Okologische Chemie, Germany.
J Chromatogr A. 1996 Oct 25;750(1-2):51-62. doi: 10.1016/0021-9673(96)00239-7.
A stepwise development for the use of capillary electrophoresis and inductively coupled plasma mass spectrometry (ICP-MS) for speciation investigations is presented. The high resolution power of CE is used for the separation of metal species, whereas ICP-MS is taken for element-specific detection with low detection limits. This contribution starts with an off-line combination of both instruments. Separation and identification of species in model solutions and real samples are shown by scanning UV detection at the CE unit with subsequent metal quantification in peak related fractions, applying electrothermal vaporization ICP-MS. Finally, first separations are demonstrated, using the on-line hyphenation with a laboratory-made nebulizer. Here, standard solutions are separated and monitored by UV and ICP-MS. Stability of electrical current during nebulization was checked and a possibly interfering suction flow was estimated. After optimization sufficient electropherograms were obtained. Advantages and problems are discussed for both modes.
介绍了一种逐步发展的方法,用于将毛细管电泳和电感耦合等离子体质谱(ICP-MS)用于形态分析研究。毛细管电泳的高分辨率用于分离金属物种,而电感耦合等离子体质谱则用于具有低检测限的元素特异性检测。本论文首先介绍了两种仪器的离线联用。通过毛细管电泳单元的扫描紫外检测展示了模型溶液和实际样品中物种的分离与鉴定,随后通过电热蒸发电感耦合等离子体质谱对峰相关馏分中的金属进行定量。最后,展示了使用实验室自制雾化器进行在线联用的首次分离。在此,标准溶液通过紫外和电感耦合等离子体质谱进行分离和监测。检查了雾化过程中的电流稳定性,并估算了可能产生干扰的抽吸流。优化后获得了足够的电泳图谱。讨论了两种模式的优缺点。