Hernández-Borges Javier, García-Montelongo Francisco J, Cifuentes Alejandro, Rodríguez-Delgado Miguel Angel
Department of Analytical Chemistry, Nutrition and Food Science, University of La Laguna, Santa Cruz de Tenerife, Spain.
J Chromatogr A. 2005 Dec 30;1100(2):236-42. doi: 10.1016/j.chroma.2005.09.053. Epub 2005 Oct 5.
In this work, a combined methodology using off-line solid-phase extraction (SPE), on-line field-enhanced sample injection (FESI) and coelectroosmotic capillary electrophoresis with UV detection (CE-UV) is developed for the trace analysis of five triazolopyrimidine sulfonanilide pesticides (i.e., flumetsulam, florasulam, cloransulam-methyl, diclosulam and metosulam). An adequate background electrolyte (BGE) was obtained for the separation of these pesticides using hexadimethrine bromide (HDB) as electroosmotic flow (EOF) modifier. This BGE consisted of 0.00042% HDB, 11 mM formic acid, 16 mM ammonium carbonate and 2.5 mM alpha-CD solution at pH 7.6. The use of this running buffer together with the FESI preconcentration method provided limits of detection (LODs) in the low microg/L range (i.e., between 13.0 and 31.5 microg/L). The optimized FESI-CE-UV method was combined with off-line SPE using C(18) cartridges and applied to the determination of the selected group of pesticides in soil samples. Recovery percentages ranged between 50 and 84% in these samples with LODs between 18 and 34 microg/kg. This work shows the great possibilities of the combined use of SPE-FESI-CE-UV to improve CE sensitivity allowing the achievement of LODs similar to other analytical techniques as GC or HPLC.
在本研究中,开发了一种结合离线固相萃取(SPE)、在线场增强进样(FESI)和紫外检测的共电渗毛细管电泳(CE-UV)的方法,用于痕量分析五种三唑并嘧啶磺酰胺类农药(即唑嘧磺草胺、双氟磺草胺、甲基二磺隆、氯酯磺草胺和甲氧磺草胺)。使用十六烷基三甲基溴化铵(HDB)作为电渗流(EOF)改性剂,获得了用于分离这些农药的合适背景电解质(BGE)。该BGE由0.00042% HDB、11 mM甲酸、16 mM碳酸铵和2.5 mM α-环糊精溶液组成,pH值为7.6。这种运行缓冲液与FESI预浓缩方法一起使用,提供了低微克/升范围内的检测限(LOD)(即13.0至31.5微克/升之间)。优化后的FESI-CE-UV方法与使用C(18)柱的离线SPE相结合,应用于土壤样品中所选农药组的测定。这些样品中的回收率在50%至84%之间,LOD在18至34微克/千克之间。这项工作表明,SPE-FESI-CE-UV联合使用在提高CE灵敏度方面具有很大潜力,能够实现与气相色谱(GC)或高效液相色谱(HPLC)等其他分析技术相似的检测限。