86
K. M. G. Mostofa et al.
Identification of Personal Care Products Using GC–MS/MS (Mottaleb
et al. 2009)
Two gas chromatography-mass spectrometry (GC–MS) methods have been
described for simultaneous determination in fish of ten extensively used personal care products (PCPs) such as benzophenone, 4-methylbenxylidine camphor
Fig. 4 LC-MS/MS reconstituted ion chromatograms displaying analyte-specific quantitation and
qualifier ions monitored for (a) a tissue extract from a fish (Lepomis sp.) that is affected by contaminants and (b) an extract from fish tissue (not affected by contaminants) spiked with known
amounts of diphenhydramine (1.6 ng g −1 ), diltiazem (2.4 ng g −1 ), carbamazepine (16 ng g −1 ),
and norfluoxetine (80 ng g −1 ). The higher m/z fragment is more intense in all cases. Data source
Ramirez et al. (2007)
K. M. G. Mostofa et al.
Identification of Personal Care Products Using GC–MS/MS (Mottaleb
et al. 2009)
Two gas chromatography-mass spectrometry (GC–MS) methods have been
described for simultaneous determination in fish of ten extensively used personal care products (PCPs) such as benzophenone, 4-methylbenxylidine camphor
Fig. 4 LC-MS/MS reconstituted ion chromatograms displaying analyte-specific quantitation and
qualifier ions monitored for (a) a tissue extract from a fish (Lepomis sp.) that is affected by contaminants and (b) an extract from fish tissue (not affected by contaminants) spiked with known
amounts of diphenhydramine (1.6 ng g −1 ), diltiazem (2.4 ng g −1 ), carbamazepine (16 ng g −1 ),
and norfluoxetine (80 ng g −1 ). The higher m/z fragment is more intense in all cases. Data source
Ramirez et al. (2007)
