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Crystal structure of flumioxazin [PDF]
The title compound {systematic name: 2-[7-fluoro-3,4-dihydro-3-oxo-4-(prop-2-yn-1-yl)-2H-1,4-benzoxazin-6-yl]-4,5,6,7-tetrahydro-1H-isoindole-1,3(2H)-dione}, C19H15FN2O4, is a dicarboximide herbicide. The dihedral angle between the maleimide and benzene ring planes is 66.13 (5)°.
Tae Ho Kim, Eunjin Kwon, Jineun Kim
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Triploid watermelon response to flumioxazin
Weed Technology, 2021AbstractField trials were conducted in 2016 and 2017 at the Southwest Purdue Agricultural Center in Vincennes, IN, to determine the tolerance of plasticulture-grown ‘Fascination’ triploid watermelon to flumioxazin. Treatments were applied after plastic was laid, but 1 d prior to transplanting, and consisted of row middle applications of clomazone (210 ...
Stephen L. Meyers +3 more
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Assessment of flumioxazin soil behavior and thermal stability in aqueous solutions
Chemosphere, 2022Flumioxazin is a preemergence, N-phenylpththalimide herbicide that can be applied to control a broad spectrum of weeds in a variety of cropping systems. Limited information exists concerning the environmental fate of flumioxazin, therefore the present studies investigated the kinetic behavior of flumioxazin in soil and aqueous solution using field and ...
Nicholas Hurdle +2 more
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Degradation of Flumioxazin in Illuminated Water–Sediment Systems
Journal of Agricultural and Food Chemistry, 2011The aerobic aquatic metabolism of flumioxazin was studied in two water-sediment systems under illumination and in darkness to investigate its degradation profiles. (14)C-Flumioxazin separately labeled at the 1- and 2-positions of the tetrahydrophthalimide moiety or uniformly labeled at the phenyl ring was applied to a overlying water at a rate ...
Takuo Fujisawa +2 more
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Hydrolysis and photolysis of flumioxazin in aqueous buffer solutions
Pest Management Science, 2004Abstract To determine the degradation rates and degradation products of the herbicide flumioxazin in aqueous buffer solutions (pH 5, 7 and 9), its hydrolysis and photolysis were investigated at 30 °C in the dark, and in a growth chamber fitted with fluorescent lamps simulating the UV output of sunlight.
Kevin Armbrust
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A colloidal gold immunochromatography for the detection of flumioxazin residues in fruits
Journal of Food Science, 2022Abstract In this study, an excellent monoclonal antibody (mAb) was produced that could sensitively and specifically recognize Flu in fruit samples. The mAb belonged to the IgG2 subclass and had a half‐inhibitory concentration (IC 50 ) of 0.59 ng/ml and a limit of detection ...
Peng Wang +6 more
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Sugarcane Response to Flumioxazin
Weed Technology, 2006The response of the sugarcane cultivars HoCP 91-555, HoCP 85-845, and LCP 85-384 to flumioxazin during the first (plant cane) and second (first ratoon) production years was evaluated within two identical experiments, the first starting in 2000 and the second in 2001. In the plant-cane crop, flumioxazin application timings were PRE immediately following
Edward P. Richard, Caleb D. Dalley
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Responses of Dry Beans to Flumioxazin
Weed Technology, 2005There is little information on the sensitivity of dry beans to flumioxazin. Tolerance of eight cultivars of dry beans representing four market classes (black, cranberry, kidney, and white beans) to preplant incorporated (PPI) and preemergence (PRE) applications of flumioxazin at the rate of 52.5, 70, and 140 g ai/ha were studied in three field ...
Nader Soltani +2 more
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Oxidative stress contributes to flumioxazin-induced cardiotoxicity in zebrafish embryos
Environmental Toxicology and Chemistry, 2023Abstract Flumioxazin is a widely applied herbicide for the control of broadleaf weeds, including aquatic plants. Current evidence suggests that flumioxazin could induce cardiac defects (ventricular septal defects) in vertebrates, but the underlining mechanisms remain unclear.
Jinze Ma +10 more
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Flumioxazin Soil Persistence and Mineralization in Laboratory Experiments
Journal of Agricultural and Food Chemistry, 2003Flumioxazin is an herbicide registered for use in soybean and peanut. However, few published papers concerning the soil persistence of flumioxazin are available. Therefore, laboratory studies were initiated to determine the half-life (t(1/2)) of flumioxazin in Greenville sandy clay loam and Tifton loamy sand soils when incubated at 15 and 25 degrees C.
Jason A, Ferrell, William K, Vencill
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