[Study and comparison of detection methods for prochloraz and its metabolite residue in garlic bolting].
Keyun Chen, Ling Li, Xiang Ju, Yanli Wang, Yan‐Ming Liu
Abstract
Keyun Chen, Ling Li, Xiang Ju, Yanli Wang, Yan‐Ming Liu
Abstract
) was greater than 0.999. The limit of quantitation (LOQ) for prochloraz in the hydrolysis method was 0.005 mg/kg. The LOQ for prochloraz in the QuEChERS method was 0.039 mg/kg, and that for 2,4,6-trichlorophenol was 0.003 mg/kg. At three spiked levels in the sample, the recoveries were 81.5%-105.4%, and the relative standard deviations (RSDs) were between 1.3%-6.8%. In the determination of positive samples, the hydrolysis method can detect the total amount of prochloraz and its main metabolites. QuEChERS method can detect the presence and contents of prochloraz and its main metabolite 2,4,6-trichlorophenol. These two methods can complement each other for the detection and confirmation of prochloraz and its metabolites in garlic bolting.
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) was greater than 0.999. The limit of quantitation (LOQ) for prochloraz in the hydrolysis method was 0.005 mg/kg. The LOQ for prochloraz in the QuEChERS method was 0.039 mg/kg, and that for 2,4,6-trichlorophenol was 0.003 mg/kg. At three spiked levels in the sample, the recoveries were 81.5%-105.4%, and the relative standard deviations (RSDs) were between 1.3%-6.8%. In the determination of positive samples, the hydrolysis method can detect the total amount of prochloraz and its main metabolites. QuEChERS method can detect the presence and contents of prochloraz and its main metabolite 2,4,6-trichlorophenol. These two methods can complement each other for the detection and confirmation of prochloraz and its metabolites in garlic bolting.
Key concepts: Quechers, Chemistry, Chromatography, Metabolite, Detection limit, Residue (chemistry), Hydrolysis, Sample preparation