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开发一种自动化在线固相萃取-高效液相色谱法,用于分析水性基质中的苯胺、苯酚、咖啡因以及各种选定的取代苯胺和苯酚化合物。

Development of an automated on-line solid-phase extraction-high-performance liquid chromatographic method for the analysis of aniline, phenol, caffeine and various selected substituted aniline and phenol compounds in aqueous matrices.

作者信息

Patsias J, Papadopoulou-Mourkidou E

机构信息

Pesticides Science Laboratory, Aristotle University of Thessaloniki, Greece.

出版信息

J Chromatogr A. 2000 Dec 29;904(2):171-88. doi: 10.1016/s0021-9673(00)00927-4.

DOI:10.1016/s0021-9673(00)00927-4
PMID:11204232
Abstract

A fully automated solid-phase extraction (SPE)-high-performance liquid chromatographic method has been developed for the simultaneous analysis of substituted anilines and phenols in aqueous matrices at the low- to sub-microg/l level. Diode array and electrochemical detection operated in tandem mode were used for analyte detection. Two new polymeric sorbent materials (Hysphere-GP and Hysphere-SH) were evaluated for the on-line SPE of substituted anilines and phenols from aqueous matrices and their performance was compared with the PRP-1 and PLRP-S sorbents. Hysphere-GP sorbent packed in 10 x 2 mm cartridges was found to give better results in terms of sensitivity and selectivity of the overall analytical method. The proposed analytical method was validated for the analysis of these compounds in Axios river water that receives industrial, communal and agricultural wastes. The detection limits for all the compounds range between 0.05 and 0.2 microg/l, except for aniline and phenol which have detection limits of 0.5 and 1 microg/l, respectively (aniline detected by electrochemical detection). The recoveries for all the compounds are higher than 75% except for aniline (6%), phenol (50%) and 3-chlorophenol (67%). Finally, in order to evaluate the efficiency of the Hysphere-GP (10 x 2 mm) cartridges for sample stabilization and storage, the stability of the compounds of interest at the sorbed state onto these cartridges has been evaluated under three different temperature regimes (deep freeze, refrigeration, 20 degrees C).

摘要

已开发出一种全自动固相萃取(SPE)-高效液相色谱法,用于同时分析水基质中低至亚微克/升水平的取代苯胺和酚类。采用串联模式运行的二极管阵列和电化学检测用于分析物检测。评估了两种新型聚合物吸附剂材料(Hysphere-GP和Hysphere-SH)用于从水基质中在线SPE取代苯胺和酚类,并将其性能与PRP-1和PLRP-S吸附剂进行了比较。发现在10×2mm柱管中填充Hysphere-GP吸附剂在整体分析方法的灵敏度和选择性方面能给出更好的结果。所提出的分析方法针对接收工业、社区和农业废弃物的阿西奥斯河水中这些化合物的分析进行了验证。除苯胺和酚的检测限分别为0.5和1微克/升(苯胺通过电化学检测)外,所有化合物的检测限在0.05至0.2微克/升之间。除苯胺(6%)、酚(50%)和3-氯酚(67%)外,所有化合物的回收率均高于75%。最后,为了评估Hysphere-GP(10×2mm)柱管用于样品稳定化和储存的效率,在三种不同温度条件(深度冷冻、冷藏、20℃)下评估了目标化合物在吸附于这些柱管状态下的稳定性。

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