Lacorte S, Barceló D
Department of Environmental Chemistry, CID-CSIC, Barcelona, Spain.
J Chromatogr A. 1995 Sep 29;712(1):103-12. doi: 10.1016/0021-9673(95)00425-m.
The trace-level determination of ten priority organophosphorus (OP) pesticides (e.g., chlorpyrifos-methyl, diazinon, disulfoton, fenthion, fenamiphos) and various transformation products (TPs; e.g., disulfoton sulfoxide, fenthion sulfoxide etc.) using automated on-line solid-phase extraction (SPE) with C18 precolumns followed by LC-MS and thermospray interface with time-scheduled selected-ion monitoring (SIM) was developed. Two main ions (usually [M+H]+ and [M+NH4]+ or [M+CH3CN]+) were used for each pesticide in the positive ion (PI) detection mode, while [M-H]- and [M+HCOO]- ions were used in the negative ion (NI) mode. The proposed method requires 100 ml of sample for a limit of detection (LOD) of 0.01-0.1 microgram/l. Calibration graphs were constructed by preconcentrating 100 ml of water spiked with the pesticide mixture at various concentrations (from 0.025 to 2 microgram/l). Good linearity was observed for most of the analytes studied. The experimental setup described in this paper was applied to study the kinetics of degradation of ten organophosphorus pesticides in spiked river water samples. The different samples were first analyzed by an automated on-line precolumn exchange system (OSP-2) followed by LC with diode array detection. To confirm the identity of the organophosphorus pesticides detected, the samples were then analyzed by automated on-line SPE-LC-MS. The method permitted unequivocal identification of many of the TPs formed during the experiments, e.g., the oxo-derivatives of chlorpyrifos-methyl, temephos and pyridafenthion, fenamiphos sulfoxide. Many of these TPs are here reported for the first time since previously used MS-based techniques were not sensitive enough.
采用配有C18预柱的自动在线固相萃取(SPE),随后进行液相色谱-质谱联用(LC-MS)以及带定时选择离子监测(SIM)的热喷雾接口,开发了痕量水平测定十种优先有机磷(OP)农药(如甲基毒死蜱、二嗪农、乙拌磷、倍硫磷、苯线磷)及其各种转化产物(TPs;如乙拌磷亚砜、倍硫磷亚砜等)的方法。在正离子(PI)检测模式下,每种农药使用两个主要离子(通常为[M+H]+和[M+NH4]+或[M+CH3CN]+),而在负离子(NI)模式下使用[M-H]-和[M+HCOO]-离子。所提出的方法检测限(LOD)为0.01 - 0.1微克/升时需要100毫升样品。通过对100毫升加有不同浓度(0.025至2微克/升)农药混合物的水样进行预浓缩来构建校准曲线。对于大多数所研究的分析物观察到良好的线性关系。本文所述的实验装置用于研究加标河水样品中十种有机磷农药的降解动力学。不同的样品首先通过自动在线预柱交换系统(OSP-2)进行分析,随后进行带二极管阵列检测的液相色谱分析。为确认所检测到的有机磷农药的身份,然后对样品进行自动在线固相萃取-液相色谱-质谱联用分析。该方法能够明确鉴定实验过程中形成的许多转化产物,例如甲基毒死蜱、双硫磷和哒嗪硫磷的氧代衍生物、苯线磷亚砜。由于之前基于质谱的技术不够灵敏,许多这些转化产物在此首次被报道。