Results 151 to 160 of about 2,143 (205)
Chiral pesticides are often produced and applied without distinguishing the difference of enantiomers, which sometimes leads to overuse and inaccurate risk assessment.
Fengshou Dong +2 more
exaly +2 more sources
In this work we studied the elimination, mineralization and detoxification of wastewaters from banana postharvest industries, contaminated with the fungicide imazalil, by means of heterogeneous advanced oxidation processes.
Cristina Fernandez-Rodriguez +2 more
exaly +2 more sources
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Vapour Phase Activity of Imazalil
Chemotherapy, 2009A series of in vitro experiments with imazalil is described. It is demonstrated that the compound has fungistatic, fungicidal and even sporocidal activity in the vapour phase against a wide variety of fungal species, e.g., dermatophytes, Candida albicans, and plant-pathogenic fungi. Possible practical applications are discussed.
J, Van Gestel +2 more
openaire +2 more sources
Ecotoxicological evaluation of imazalil transformation products on Eisenia Andrei
Ecotoxicology, 2021Data concerning the toxicity of the transformation products of some pesticides considered emerging contaminants are still incipient. This study aimed to evaluate acute (filter paper contact and avoidance test) and chronic (assays carried out in Red yellow Ultisoil) effects of the transformation products of the fungicide imazalil (IMZ) by heterogeneous ...
Fábio Veríssimo Correia +4 more
openaire +2 more sources
Postharvest Biology and Technology, 2011
Abstract The extensive use of imazalil (IMZ) in Uruguayan citrus packinghouses to control Penicillium spp. favored the selection and proliferation of resistant isolates. With the aim of detecting Penicillium digitatum biotypes that are not controlled by commercial doses of IMZ, the IMZ concentration within amended potato dextrose agar (PDA) plates ...
E. Pérez +4 more
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Abstract The extensive use of imazalil (IMZ) in Uruguayan citrus packinghouses to control Penicillium spp. favored the selection and proliferation of resistant isolates. With the aim of detecting Penicillium digitatum biotypes that are not controlled by commercial doses of IMZ, the IMZ concentration within amended potato dextrose agar (PDA) plates ...
E. Pérez +4 more
openaire +1 more source
Antifungal mode of action of imazalil
Pesticide Biochemistry and Physiology, 1978Abstract Imazalil had no effect on the initial growth of mycelia of Penicillium italicum (for 10 hr) or Aspergillus nidulans (for 2 hr). In P. italicum during this period neither respiration nor cell permeability was affected, but uptake of [ 32 P]phosphate, [ 14 C]leucine, or [ 14 C]uridine was partially inhibited.
Malcom R. Siegel, N.N. Ragsdale
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Journal of Agricultural and Food Chemistry, 2009
The influence of the immersion of lemon fruit in aqueous imazalil (IMZ) mixtures at 25 or 50 degrees C on the deposition and persistence of IMZ within the fruit rind and its effectiveness in controlling postharvest green mold, caused by Penicillium digitatum, was investigated.
Dore A +3 more
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The influence of the immersion of lemon fruit in aqueous imazalil (IMZ) mixtures at 25 or 50 degrees C on the deposition and persistence of IMZ within the fruit rind and its effectiveness in controlling postharvest green mold, caused by Penicillium digitatum, was investigated.
Dore A +3 more
openaire +2 more sources
The elimination and mineralization of the fungicide imazalil and its by-products has been studied by means of heterogeneous photocatalysis. The activity of different photocatalysts, including the commercial TiO2 benchmark photocatalyst (Evonik P25) and ...
Cristina Fernandez-Rodriguez +2 more
exaly +2 more sources
A modification of imazalil residue analysis in treated grapefruit
Journal of Environmental Science and Health, Part B, 1981Residues of imazalil, 1-[2-(2,4-dichlorophenyl)-2-(2-propenyloxy)ethyl]-1H-imidazole, a fungicide that prevents decay of citrus, were determined in treated grapefruit. The method consists of a simplified heptance-isoamyl extraction solvent, acid-base clean-up, and direct gas chromatographic analysis with electron-capture detection.
E R, Stein, W W, Carter, A T, Murray
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Antifungal activity of the systemic fungicide imazalil
Netherlands Journal of Plant Pathology, 1977The antifungal activity of imazalil against spores of Penicillium italicum and several other fungi was found to be pH-dependent. The fungicide was much less effective at pH 5.2 than at pH 7.0. However, related members of the imidazole class of fungicides (miconazole and clotrimazole) did not show this pH dependency.
M. R. Siegel +2 more
openaire +1 more source

