Journal of Environmental Science and Health Part B · 2010 · 38 citations · 6 references
Ph 4EngineeringDegradation ReactionMetabolic ModelRedox BiologyEnvironmental ChemistryNutrient BioavailabilityFirst OrderBioenergeticsBioanalysisAnalytical ChemistryDifferent PhStructure-function Enzyme KineticsChromatographyBiochemistryAzoxystrobin AcidPhysiologyMetabolismMedicine
Metabolism of (14)C-azoxystrobin was studied in water at pH 4, 7 and 9. The study suggested that volatilization losses of azoxystrobin were very low (3%) during 130 days of incubation. Only 2.5-4.2% of azoxystrobin was mineralised to CO(2) and pH of water did not have much effect on rate of mineralisation. The dissipation of azoxystrobin in water of all the three pHs followed first order kinetic with half-life values ranging from 143 to 158 d; degradation was the fastest at pH 9. Azoxystrobin acid, a major metabolite, was detected 4-7 day onwards and its concentration increased up to 130 days. The formation of azoxystrobin acid was more and faster under alkaline (pH 9) condition than neutral (pH 7) or acidic (pH 4) conditions.
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Gary D. Bending, Suzanne D. Lincoln, R. N. Edmondson · Environmental Pollution · 2005 · 172 citations
Review: The strobilurin fungicides
DW Bartlett, Clough Jm, JR Godwin et al. · Pest Management Science · 2004 · 129 citations · Full text