Chirality · 1993 · 75 citations · 14 references
Enantiomeric ratios of 11 chiral environmental pollutants determined in different compartments of the marine ecosystem by chiral capillary gas chromatography and chiral high-performance liquid chromatography allow discrimination between the following processes: enantioselective decomposition of both enantiomers with different velocities by marine microorganisms (alpha-HCH, beta-PCCH, gamma-PCCH); enantioselective decomposition of one enantiomer only by marine microorganisms (DCPP); enantioselective decomposition by enzymatic processes in marine biota (alpha-HCH, beta-PCCH, trans-chlordane, cis-chlordane, octachlordane MC4, octachlordane MC5, octachlordane MC7, oxychlordane, heptachlor epoxide); enantioselective active transport through the "blood-brain barrier" (alpha-HCH); nonenantioselective photochemical degradation (alpha-HCH, beta-PCCH).
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Hans Rudolf Buser, Markus D. Mueller, Christoffer Rappe · Environmental Science & Technology · 1992 · 123 citations
Engineering, Altmetric Attention Score, Organic Chemistry +18
Stephanie Mössner, Terry R. Spraker, Paul R. Becker et al. · Chemosphere · 1992 · 75 citations
Animal Physiology, Veterinary Physiology, Callorhinus Ursinus +12
Heinrich Huehnerfuss, Joern Faller, W. A. Koenig et al. · Environmental Science & Technology · 1992 · 64 citations
Gas Chromatographic Separation, Environmental Chemistry, Engineering +15