Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7615213 | Journal of Chromatography B | 2018 | 33 Pages |
Abstract
A rapid, sensitive and effective supercritical fluid chromatographic-tandem mass spectrometry (SFC-MS/MS) method was developed to analyze thiacloprid for the first time. The SFC-MS/MS conditions were optimized with the ultra-performance convergence chromatography (UPC2) BEH column (100â¯mmâ¯Ãâ¯3.0â¯mm, 1.7â¯Î¼m particle size) and thiacloprid was eluted at 1.22â¯min in gradient mode with CO2/methanol as mobile phase. The 0.1% formic acid in methanol (v/v) was used as postcolumn compensation solution to improve sensitivity. The ABPR pressure, flow rate of mobile phase and flow rate of compensation pump were set at 1800â¯psi, 1.8â¯mL/min, and 0.1â¯mL/min, respectively. The average recoveries of thiacloprid in soil at four spiking levels (5, 10, 100, 1000â¯Î¼g/kg) ranged between 78.8% and 107.1% with relative standard deviations (RSDs) lower than 12.2% and the limit of quantitation (LOQ) was 5â¯Î¼g/kg. The proposed method can distinctly improve the analysis efficiency by 2-12 times and reduce the solvent consumption by 5%-95% compared with reported methods. It was applied to investigate the dissipation rates of thiacloprid in greenhouse vegetables and soil under different application modes. The half-lives of thiacloprid in cucumber and soil were 9.55-20.44â¯days and 3.74-9.14â¯days separately under different application modes, 10.60â¯days in tomato under foliar spraying. The residues in vegetables under root irrigation were all less than that under foliar spraying. The results could offer useful data for risk assessment of thiacloprid in agricultural production.
Keywords
MRMABPRUPC2MEKCSFC-MS/MSGCBUPLCRCFPSAESIRSDLOQt1/2primary secondary aminerelative standard deviationThiaclopridEnzyme-linked immunosorbent assayELISAGreenhouse vegetableslimit of quantificationDegradation ratesMultiple-reaction monitoringrelative centrifugal forceHalf-lifeMicellar electrokinetic chromatographyUltrahigh-performance liquid chromatographyhigh-performance liquid chromatographyHPLCUltra-performance convergence chromatographygraphitized carbon blackelectrospray ionization
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Runan Li, Zenglong Chen, Fengshou Dong, Jun Xu, Xingang Liu, Xiaohu Wu, Xinglu Pan, Yan Tao, Yongquan Zheng,