Hogendoorn E, van Zoonen P
Laboratory of Organic-Analytical Chemistry, National Institute of Public Health and the Environment (RIVM), Bilthoven, The Netherlands.
J Chromatogr A. 2000 Sep 15;892(1-2):435-53. doi: 10.1016/s0021-9673(00)00151-5.
Until recently, the application of liquid chromatography (LC) in pesticide analysis was usually focused on groups of compounds or single compounds for which no suitable conditions were available for analysis with gas chromatography (GC). However, recent developments in both detection and column material technology show that LC significantly enlarged its scope in this field of analysis. Obviously, the most striking example is the rather abrupt transition of LC coupled to mass spectrometric detection (MS) from an experimental and scientifically fashionable technique to a robust, sensitive and selective detection mode rendering LC-MS being increasingly used in pesticide trace analysis. Other recent major developments originate from the innovation of new LC column packing materials, viz. immuno-affinity sorbents, restricted access medium materials and molecular imprinted polymers improving considerably the screening of polar pesticides by means of reversed-phase LC with UV detection. In this review the merits and perspectives of these important LC developments and their impact to current and future applications in pesticide trace analysis are presented and discussed.
直到最近,液相色谱(LC)在农药分析中的应用通常集中于那些没有适合气相色谱(GC)分析条件的化合物组或单一化合物。然而,检测和柱材料技术的最新进展表明,LC在该分析领域的范围显著扩大。显然,最显著的例子是与质谱检测(MS)联用的LC从一种实验性且在科学上流行的技术迅速转变为一种强大、灵敏且选择性的检测模式,使得LC-MS越来越多地用于农药痕量分析。其他近期的主要进展源自新型LC柱填充材料的创新,即免疫亲和吸附剂、限进介质材料和分子印迹聚合物,它们通过带有紫外检测的反相LC极大地改善了极性农药的筛选。在本综述中,将介绍并讨论这些重要的LC进展的优点和前景及其对农药痕量分析当前和未来应用的影响。