He Limin, Liu Xiangguo, Zeng Zhenling
Testing Center of Animal and Poultry Products Quality Control Inspection (Guangzhou) of Ministry of Agriculture, College of Veteriry Medicine, South China Agriacultural University, Guangzhou 510642, China.
Se Pu. 2008 Jan;26(1):98-104.
The sample matrix can cause an enhancement in the observed chromatographic response for pesticide residues in a matrix extract compared with the same concentration in a matrix-free solution. The matrix increases the transfer of pesticides from the hot vaporizing injectors by reducing the thermal stress for labile compounds and by masking the active sites in the injector responsible for the adsorption or decomposition of polar pesticides. The use of different injector types and matrix simplification procedures can reduce matrix-induced enhancement but do not eliminate it. The most effective strategy is to use matrix-matched calibration standards or analyte protectants which equalize the response enhancement for calibration standards and sample extracts. From a practical point of view, it is important that the method used to correct for matrix-induced enhancement is compatible with low system maintenance. The different approaches for correcting matrix-induced enhancement for calibration in pesticide residue analysis are discussed and compared in this review.
与无基质溶液中相同浓度的农药残留相比,样品基质可导致基质提取物中农药残留的色谱响应增强。基质通过降低不稳定化合物的热应力以及掩盖进样器中负责极性农药吸附或分解的活性位点,增加了农药从热蒸发进样器的转移。使用不同类型的进样器和基质简化程序可以减少基质诱导的增强,但不能消除它。最有效的策略是使用基质匹配的校准标准品或分析物保护剂,使校准标准品和样品提取物的响应增强相等。从实际角度来看,用于校正基质诱导增强的方法与低系统维护兼容非常重要。本文综述并比较了农药残留分析中校正基质诱导增强以进行校准的不同方法。