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Study of the Effect of Air to Fuel ratio Parameter on the Organophosphorus – Pesticide Analysis by GC-FPD

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the present contribution, sensitive and precise method for the quantification of Organophosphorus / Pesticides (Malathion and Dimethoate) in nanograms range has been developed. The performance of flame photometric detector (FPD), a selective detector (P&S-mode) that can be used in the analysis of organophosphorus compound, is evaluated in terms of sensitivity, selectivity and reproducibility. The performance of flame photometric detector was strongly depending on the absolute and relative flow rate of air and hydrogen gases. The optimum air-to-fuel ratio for detection of Malathion and Dimethoate was 0.4 and 0.3 (FPD-P mode). At this ratio, low picogram amounts of phosphor can be detected accurately (0.18 pgP) with a wide linear dynamic range of 0.18 pgP to 298 ngP. While, the optimum air-to-fuel ratio, for detection of Malathion and Dimethoate was 0.6 (FPD-S mode). In addition to, the method is precise with 4.5 % relative standard deviation (RSD). In conclusion, it could be proposed that this procedure can be recommended as a suitable method for the quantification of Malathion and Dimethoate in cases of acute poisoning.
Rocznik
Strony
236--248
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
  • Egyptian Armed Forces, Cairo, Egypt Tel. +201141750544; Fax: +222621918
  • Egyptian Armed Forces, Cairo, Egypt Tel. +201141750544; Fax: +222621918
  • Egyptian Armed Forces, Cairo, Egypt Tel. +201141750544; Fax: +222621918
Bibliografia
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  • [2] Crider W. L., Analytical Chemistry 41(3) (1969) 534-537.
  • [3] Bennett G. F., Introduction to Environmental Analysis: Roger Reeve, John Wiley & Sons, Inc., New York, MY, 2002, Elsevier.
  • [4] Brody S. S., J. E. Chaney, Journal of Chromatographic Science 1966. 4(2) (1966) 42-46.
  • [5] Versino B., G. Rossi, Chromatographia 4(8) (1971) 331-336.
  • [6] Dagnall R., K. Thompson, T. West, Analyst 93(1103) (1968) 72-78.
  • [7] Marek B., Todd S., Aamand S., Journal of Enzyme Inhibition and Medicinal Chemistry 18(6) (2003) 551-555.
  • [8] WHO, "Malathion in Drinking water", 2004, WHO/SDE/WSH/103.
  • [9] A. Ayman, Gouda Alaa S., Amin Ragaa El Sheikh, Chemical Industry & Chemical Engineering Quarterly 16(1) (2010) 11-18.
  • [10] WHO. Environmental Health Criteria monograph “Dimethoate”, WHO, Geneva, 1989.
  • [11] Dömötörová M., E. Matisová, Journal of Chromatography A 1207(1) (2008) 1-16.
  • [12] Wang D., D. P. Weston, M. J. Lydy, Talanta 78(4) (2009) 1345-1351.
  • [13] Saeed T., et al., Food Control 12(2) (2001) 91-98.
  • [14] Frishman G., A. Amirav, Field Analytical Chemistry & Technology 4(4) (2000) 170-194.
  • [15] Bidari A., et al., Food Chemistry 126(4) (2011) 1840-1844.
  • [16] Samadi, S., H. Sereshti, and Y. Assadi, Journal of Chromatography A 1219 (20
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4332f272-0042-4693-8188-53e9d82e1b8f
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