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Organophosphorus pesticide and ester analysis by using comprehensive two-dimensional gas chromatography with flame photometric detection. | LitMetric

AI Article Synopsis

  • The study analyzed 37 phosphorus-containing compounds, specifically organophosphorus pesticides and organophosphate esters, using a specialized gas chromatography technique that enhances detection and separation.
  • The method achieved high detection selectivity for phosphorus atoms, allowing clear identification of compounds even in complex mixtures like diesel.
  • Soil samples were also tested, revealing the presence of some phosphorus compounds, showcasing the effectiveness of this technique for environmental analysis.

Article Abstract

Thirty-seven phosphorus (P)-containing compounds comprising organophosphorus pesticides and organophosphate esters were analyzed by using comprehensive two-dimensional gas chromatography with flame photometric detection in P mode (GC × GC-FPD(P)), with a non-polar/moderately polar column set. A suitable modulation temperature and period was chosen based on experimental observation. A number of co-eluting peak pairs on the (1)D column were well separated in 2D space. Excellent FPD(P) detection selectivity, responding to compounds containing the P atom, produces clear 2D GC × GC plots with little interference from complex hydrocarbon matrices. Limits of detection (LOD) were within the range of 0.0021-0.048 μmol L(-1), and linear calibration correlation coefficients (R(2)) for all 37 P-compounds were at least 0.998. The P-compounds were spiked in 2% diesel and good reproducibility for their response areas and retention times was obtained. Spiked recoveries were 88%-157% for 5 μg L(-1) and 80%-138% for 10 μg L(-1) spiked levels. Both (1)tR and (2)tR shifts were noted when the content of diesel was in excess of 5% in the matrix. Soil samples were analyzed by using the developed method; some P-compounds were positively detected. In general, this study shows that GC × GC-FPD(P) is an accurate, sensitive and simple method for P-compound analysis in complicated environmental samples.

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Source
http://dx.doi.org/10.1016/j.jhazmat.2013.10.048DOI Listing

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