phase microextraction coupled to gas chromatography with ECD and ICP-MS detection.
Talanta 75(3):710–716
Finizio A, Bidleman TF, Szeto SY (1998) Emission of chiral pesticides from an agricultural soil in
the fraser Valley, british columbia. Chemosphere 36(2):345–355
Fisk AT, Holst M, Hobson KA, Duffe J, Moisey J, Norstrom RJ (2002) Persistent organochlorine
contaminants and enantiomeric signatures of chiral pollutants in ringed seals (Phoca hispida)
collected on the east and west side of the Northwater Polynya, Canadian Arctic. Arch Environ
Contam Toxicol 42(1):118–126
Fleming I (2009) Molecular orbitals and organic chemical reactions. West Sussex; Wiley, Chichester; UK
Franke S, Meyer C, Specht M, König WA, Francke W (1998) Chloro-bis-propyl Ethers in the Elbe
River – Isomeric distribution and enantioselective degradation. J High Resolut Chromatogr 21
(2):113–120
Franke S, Meyer C, Heinzel N, Gatermann R, Hühnerfuss H, Rimkus G, König WA, Francke W
(1999) Enantiomeric composition of the polycyclic musks HHCB and AHTN in different
aquatic species. Chirality 11(10):795–801
Frkova Z, Johansen A, de Jonge LW, Olsen P, Gosewinkel U, Bester K (2016) Degradation and
enantiomeric fractionation of mecoprop in soil previously exposed to phenoxy acid herbicides -
New insights for bioremediation. Sci Total Environ 569-570:1457–1465
Fromme H, Otto T, Pilz K, Neugebauer F (1999) Levels of synthetic musks; Bromocyclene and
PCBs in eel (anguilla anguilla) and PCBs in sediment samples from some waters of Berlin/
Germany. Chemosphere 39(10):1723–1735
Gamiz B, Facenda G, Celis R (2016a) Evidence for the effect of sorption enantioselectivity on the
availability of chiral pesticide enantiomers in soil. Environ Pollut 213:966–973
Gamiz B, Pignatello JJ, Cox L, Hermosin MC, Celis R (2016b) Environmental fate of the fungicide
metalaxyl in soil amended with composted olive-mill waste and its biochar: an enantioselective
study. Sci Total Environ 541:776–783
Gan JJ (2008) Synthetic pyrethroids: occurrence and behavior in aquatic environments. American
Chemical Society; Distributed by Oxford University Press, Washington, DC; New York
Gao B, Zhang Q, Tian M, Zhang Z, Wang M (2016) Enantioselective determination of the chiral
pesticide isofenphos-methyl in vegetables, fruits, and soil and its enantioselective degradation in
pak choi using HPLC with UV detection. Anal Bioanal Chem 408(24):6719–6727
Gao S, Tian B, Zeng X, Yu Z (2019) Enantiomeric analysis of polycyclic musks AHTN and HHCB
and HHCB-lactone in sewage sludge by gas chromatography/tandem mass spectrometry. Rapid
Commun Mass Spectrom 33(6):607–612
Garg N, Lata P, Jit S, Sangwan N, Singh AK, Dwivedi V, Niharika N, Kaur J, Saxena A, Dua A,
Nayyar N, Kohli P, Geueke B, Kunz P, Rentsch D, Holliger C, Kohler HP, Lal R (2016)
Laboratory and field scale bioremediation of hexachlorocyclohexane (HCH) contaminated soils
by means of bioaugmentation and biostimulation. Biodegradation 27(2-3):179–193
Garrison AW (2006) Probing the enantioselectivity of chiral pesticides. Environ Sci Technol 40
(1):16–23
Garrison AW, Nzengung VA, Avants JK, Ellington JJ, Wolfe NL (1997) Determining the environmental enantioslectivity of o,p
0 -DDT and o,p
0 -DDD. Organohalogen Comp. 31:256–261
Garrison AW, Schmitt-Kopplin P, Avants JK (2008) Analysis of the enantiomers of chiral pesticides and other pollutants in environmental samples by capillary electrophoresis. Methods Mol
Biol 384:157–170
Garrison AW, Avants JK, Jones WJ (2011a) Microbial transformation of triadimefon to triadimenol
in soils: selective production rates of triadimenol stereoisomers affect exposure and risk.
Environ Sci Technol 45(6):2186–2193
Garrison AW, Gan JJ, Liu W, American Chemical Society. Division of Agrochemicals (2011b)
Chiral pesticides: stereoselectivity and its consequences. American Chemical Society,
Washington, DC
References
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