Dispersive Liquid-Liquid Microextraction Combined with Gas Chromatography-Mass Spectrometry for the Determination of Multiple Pesticides in Celery

文献类型: 外文期刊

第一作者: Wei, Haifeng

作者: Wei, Haifeng;Liu, Deyun;Xia, Gaofeng;Yang, Xiaoyun;Miao, Xuexue

作者机构:

关键词: Pesticide residue;Celery;GC-MS;QuEChERS;DLLME

期刊名称:FOOD ANALYTICAL METHODS ( 影响因子:3.366; 五年影响因子:3.07 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: A rapid and sensitive method was established to simultaneously determine multiple pesticide residues in celery through gas chromatography-mass spectrometry (GC-MS). Samples were extracted through a modified quick, easy, cheap, effective, robust, and safe method (modified QuEChERS) and then refined and preconcentrated through dispersive liquid-liquid microextraction (DLLME) by using CHCl3 as extractive solvent and acetonitrile (ACN) as dispersive solvent. The main factors, including type of extraction solvent, volume of extraction solvent, volume of dispersive solvent, extraction time, salt concentration, vortex velocity, and pH of aqueous solution, influencing DLLME were initially evaluated by performing single-factor variable experiments; three significant factors, particularly volume of extraction solvent, volume of dispersive solvent, and extraction time, were thoroughly analyzed through response surface methodology. The following optimized extraction conditions were obtained: 100 mu L of CHCl3, 900 mu L of ACN, and 1.62-min extraction time. The optimized method was validated with average recoveries ranging from 70.8 to 93.2 % (with relative standard deviations of < 15 %) at three spiked levels for all of the pesticides. Good linearity with determination coefficients of > 0.9974 was obtained on the basis of the matrix-matched calibration curve of each pesticide; limits of detection ranging from 2.4 to 14.2 mu g/kg indicated high sensitivity. Malathion with concentrations varying from 0.009 to 0.012 mg/kg was detected in all of the samples; other pesticides were not detected.

分类号: TS2

  • 相关文献

[1]Determination of 4 Pesticides Residues in Citrus and Essential Oil by Ultra Performance Liquid Chromatography-Mass Spectrometry. Kong Zhi-Qiang,Dong Feng-Shou,Liu Xin-Gang,Xu Jun,Zheng Yong-Quan,Gong Yong,Shan Wei-Li. 2012

[2]Determination of Persistent Environmental Pollutants in Bee Pollen by Gas Chromatography-Mass Spectrometry Using a Modified QuEChERS Approach. Wei, Yue,Chen, Fang,Xue, Xiaofeng,Li, Yi,Jinhuizhou,Zhao, Liuwei,Cao, Weirui,Wu, Liming,Wei, Yue,Chen, Fang,Xue, Xiaofeng,Li, Yi,Jinhuizhou,Zhao, Liuwei,Cao, Weirui,Wu, Liming,Yu, Linsheng.

[3]Multi-residue method for determination of seven neonicotinoid insecticides in grains using dispersive solid-phase extraction and dispersive liquid-liquid micro-extraction by high performance liquid chromatography. Wang, P.,Yang, X.,Cui, J.,Dong, A. J.,Zhao, H. T.,Zhang, L. W.,Wang, Z. Y.,Xu, R. B.,Li, W. J.,Zhang, Y. C.,Zhang, H.,Jing, J.,Yang, X.,Wang, J..

[4]Cadmium Accumulation in soil and Celery from a Long-Term Manure Applied Field Experiment. Sun, Qinping,Li, Jijin,Liu, Bensheng,Gao, Lijuan,Xu, Junxiang,Zou, Guoyuan,Liu, Baocun. 2013

[5]Risk assessment of pesticide residues in dietary intake of celery in China. Fang, Liping,Zhang, Shuqiu,Chen, Zilei,Du, Hongxia,Zhu, Qian,Dong, Zhan,Li, Huidong,Fang, Liping,Zhang, Shuqiu,Chen, Zilei,Du, Hongxia,Zhu, Qian,Dong, Zhan,Li, Huidong. 2015

[6]The influence of coated urea on yield and quality of vegetable crops and nitrogen balance in calcareous Chao soil. Xiong, Yousheng,Yuan, Jiafu,Hu, Ronggui. 2010

[7]Apigenin accumulation and expression analysis of apigenin biosynthesis relative genes in celery. Yan, Jun,Yu, Li,Xu, Shuang,Gu, Weihong,Zhu, Weimin. 2014

[8]Phenolic Composition and Antioxidant Activities of 11 Celery Cultivars. Yao, Yang,Sang, Wei,Ren, Guixing,Zhou, Mengjie. 2010

[9]Effect of thermal treatment on phenolic composition and antioxidant activities of two celery cultivars. Yao, Yang,Ren, Guixing. 2011

[10]Bagging Technology Reduces Pesticide Residues in Table Grapes. Wan, Yizhen,Hou, Qi-Rui,Wen, Yan,Wang, Lei,Lu, Quanyou,Wan, Yizhen,Hou, Qi-Rui,Wen, Yan,Wang, Lei,Lu, Quanyou.

[11]Concentration and dissipation of chlorantraniliprole and thiamethoxam residues in maize straw, maize, and soil. Zheng, Yongquan,He, Min,Jia, Hong C.,Song, Dan.

[12]Behavior of field-applied triadimefon, malathion, dichlorvos, and their main metabolites during barley storage and beer processing. Kong, Zhiqiang,Li, Minmin,Chen, Jieying,Gui, Yuejing,Bao, Yuming,Fan, Bei,Dai, Xiaofeng,Jian, Qiu,Francis, Frederic.

[13]Management of pesticide residues in China. Dong Feng-shou,Xu Jun,Liu Xin-gang,Zheng Yong-quan. 2015

[14]Risk assessment and ranking of pesticide residues in Chinese pears. Li Zhi-xia,Nie Ji-yun,Yan Zhen,Xu Guo-feng,Kuang Li-xue,Pan Li-gang,Pan Li-gang,Xie Han-zhong,Wang Cheng,Liu Chuan-de,Zhao Xu-bo,Guo Yong-ze. 2015

[15]A chemometric processing-factor-based approach to the determination of the fates of five pesticides during apple processing. Li, Minmin,Liu, Yanan,Fan, Bei,Lu, Jia,He, Yan,Kong, Zhiqiang,Zhu, Yulong,Wang, Fengzhong,Jian, Qiu.

[16]An electrochemiluminescence aptasensor switch for aldicarb recognition via ruthenium complex-modified dendrimers on multiwalled carbon nanotubes. Li, Shuhuai,Liu, Chunhua,Han, Bingjun,Luo, Jinhui,Yin, Guihao,Li, Shuhuai,Liu, Chunhua,Han, Bingjun,Luo, Jinhui,Yin, Guihao. 2017

[17]Health risks of consuming apples with carbendazim, imidacloprid, and thiophanate-methyl in the Chinese population: Risk assessment based on a nonparametric probabilistic evaluation model. Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen,Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen,Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen.

[18]Effect of home processing on the distribution and reduction of pesticide residues in apples. Kong, Z.,Dong, F.,Liu, X.,Xu, J.,Li, M.,Zheng, Y.,Shan, W.. 2012

[19]Degradation of Chlorpyrifos and Fipronil in Rice from Farm to Fork and Risk Assessment. Zhang Cun-zheng,Liu Xian-jin,Tian Zi-hua,He Dan-jun,Zhang Xin-ming. 2010

[20]Determination of Aminoglycoside Fungicide Validamycin A in Rice Plant by Quick, Easy, Cheap, Effective, Rugged, and Safe Approach Using Ultra High Performance Liquid Chromatography-Electrospray Ionization-Tandem Mass Spectrometry. Dong, Fengshou,Xu, Jun,Liu, Xingang,Zheng, Yongquan,Liu, Na.

作者其他论文 更多>>