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Determination of matrix effects occurred during the analysis of organochlorine pesticides in agricultural products using GC-ECD

机译:使用GC-ECD测定农产品中有机氯农药时发生的基质效应

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摘要

Matrix effects observed during the multiresidue analysis of seven organochlorine pesticides in six different agricultural products with GC-ECD were assessed. The presence of matrix coextractives, a major cause of observed matrix effects, directly and/or indirectly influenced the chromatographic responses of some pesticides. Two types of external calibrations, solvent calibration (SC) and matrixmatched calibration (MC), were used to assess matrix effects. Greater matrix effects were observed at the lower concentrations of each pesticide. The extent of matrix effects varied unpredictably with matrix type. Among the analyzed pesticides, iprodione, cyhalothrin, and cypermethrin exhibited greater matrix effects (>150%) for almost all matrices. The pesticide recovery rates obtained with MC were not statistically different from a 100% recovery rate in most samples, which indicates that MC may diminish the overestimates occurred due to matrix effects in GC analysis.
机译:评估了使用GC-ECD对六种不同农产品中的七种有机氯农药进行多残留分析时观察到的基质效应。基质共萃取物的存在是观察到的基质效应的主要原因,直接和/或间接影响了某些农药的色谱响应。两种外部校准类型,即溶剂校准(SC)和基质匹配校准(MC),用于评估基质效应。在每种农药的较低浓度下观察到更大的基质效应。矩阵效应的程度随矩阵类型的变化而变化。在分析的农药中,异丙醇,氟氯氰菊酯和氯氰菊酯对几乎所有基质都表现出更大的基质效应(> 150%)。 MC农药回收率与大多数样品的100%回收率无统计学差异,这表明MC可以减少由于GC分析中基质效应引起的高估。

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