Article Detail

Home > Article Detail
  • P-ISSN 1225-0163
  • E-ISSN 2288-8985

Determination of 105 pesticide residues by GC/MS/MS

Analytical Science and Technology / Analytical Science and Technology, (P)1225-0163; (E)2288-8985
2010, v.23 no.4, pp.395-404
https://doi.org/10.5806/AST.2010.23.4.395






  • Downloaded
  • Viewed

Abstract

A multi-residual method using gas chromatography coupled with mass spectrometry (GC/MS/MS) was developed for the analysis of 105 pesticides. This method was tested on lemons, beans and other vegetables. The pretreatment of these pesticides was performed by liquid-liquid partition followed by cleanup with solid phase extraction cartridge (SPE Florisil), after acetonitrile extraction from matrices and sodium chloride (15 g) addition. The recovery ranged from 71.1% to 126.0% except for azinphosmethyl,famoxadone, fenamidone, flufenoxuron and triadimefon in lemons and from 72.5% to 124.5%in bean. In lemon, the limit of detection (LOD) and limit of quantification (LOQ) were 0.001~150 ng/mL and 0.004~500 ng/mL, respectively.

keywords
multi-residual method, GC/MS/MS, limit of detection, limit of quantification


Reference

1

1. F. J. Egea Gonzalez, A. Mena Granero, C. R. Glass, A. Garrido Frenich and J. L. Martinez Vidal, Rapid Communications in mass Spectrometry, 18, 537-543(2004).

2

2. S. K. Cho, A. M. Abd EI-Aty, Y. S. Park, J. H. Choi, S. Khay, C. A. Kang, B. J. Park, S. J. Kim and J. H. Shim, Biomed. Chromatogr. 21, 602-609(2007).

3

3. J. Boer and R. J. Law, J. Chromatogr. A., 1000, 223- 251(2003).

4

4. G. F. Pang, Y. M. Liu, C. L. Fan, J. J. Zhang, Y. Z. Cao, X. M. Li, Z. Y. Li, Y. P. Wu and T. T. Guo, Anal. Bioanal. Chem., 384, 1366-1408(2006).

5

5. Z. Lv, L. Gao, H. Gao, Z. Hou and B. Zhang, J. Food Sci., 74, 37-41(2009).

6

6. X. G. Chu, X. Z. Hu and H. Y. Yaho, J. Chromatogr. A., 1063, 201-210(2005).

7

7. P. Sandra, B. Tienpont and F. David, J. Chromatogr. A., 1000, 299-309(2003).

8

8. F. J. Arrebola, J. L. Martinez Vidal, A. Fernandez Gutierrez and M. A. Akhtar, Anal. Chim. Acta., 401, 45(1999).

9

9. E. Pitarch, R. Serrano, F. J. Lopez, F. Hernandez, Anal. Bioanal Chem, 376, 189-197(2003).

10

10. E. Jaqerdeo, J. E. Schaff, M. A. Montgomery, M. A. Lebeau, Rapid Commun. Mass Spectrum., 23, 2697- 2705(2009).

11

11. D. Tsikas, F. M. Gutaki, F. M., J. Sandmann, E. Schwedhelm and J. C. Frolich, J. Chromatogr. B. Biomed. Sci. Appl., 731, 285-291(1999).

12

12. N. Sauret-Szczepanski, P. Mirabel, H. Wortham, Environ. Pollut. 139, 133-142(2006).

13

13. J. L. Martinez Vidal, M. C. Pablos-Espada, A. Garrido Frenich and F. J. Arrebola, J. Chromatogr. A., 867, 235- 245(2000).

14

14. J. L. Fernandez Moreno, A. Garrido Frenich, P. Plaza Bolanos and J. L. Martinez Vidal, J. Mass Spectrom., 43, 1235-1254(2008).

15

15. M. Gamon, C. Lleo and A. Ten, F. Mocholi, J. AOAC Int., 84, 1209-1216(2001).

상단으로 이동

Analytical Science and Technology