Simon
Navarro Garcia
Catedraticos de Universidad
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Instituto Murciano de Investigacion y Desarrollo Agrario y Alimentario
La Alberca de Záncara, EspañaPublicaciones en colaboración con investigadores/as de Instituto Murciano de Investigacion y Desarrollo Agrario y Alimentario (36)
2019
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Photooxidation of insecticide residues by ZnO and TiO2 coated magnetic nanoparticles under natural sunlight
Journal of Photochemistry and Photobiology A: Chemistry, Vol. 372, pp. 245-253
2018
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Descontaminación de aguas con productos fitosanitarios procedentes del enjuague de las cubas y de la limpieza de la maquinaria agrícola mediante fotocatálisis solar
Agrícola vergel: Fruticultura, horticultura, floricultura, Núm. 411, pp. 232-235
2017
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Enhanced degradation of spiro-insecticides and their leacher enol derivatives in soil by solarization and biosolarization techniques
Environmental Science and Pollution Research, Vol. 24, Núm. 10, pp. 9278-9285
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Solar detoxification of water polluted with fungicide residues using ZnO-coated magnetic particles
Chemical Engineering Journal, Vol. 330, pp. 71-81
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Trial of solar heating methods (solarization and biosolarization) to reduce persistence of neonicotinoid and diamide insecticides in a semiarid Mediterranean soil
Science of the Total Environment, Vol. 590-591, pp. 325-332
2016
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Photooxidation of three spirocyclic acid derivative insecticides in aqueous suspensions as catalyzed by titanium and zinc oxides
Journal of Photochemistry and Photobiology A: Chemistry, Vol. 328, pp. 189-197
2015
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Photocatalytic mitigation of triazinone herbicide residues using titanium dioxide in slurry photoreactor
Catalysis Today, Vol. 252, pp. 70-77
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Photocatalytic oxidation of pirimicarb in aqueous slurries containing binary and ternary oxides of zinc and titanium
Journal of Photochemistry and Photobiology A: Chemistry, Vol. 298, pp. 24-32
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Photodegradation of neonicotinoid insecticides in water by semiconductor oxides
Environmental Science and Pollution Research, Vol. 22, Núm. 19, pp. 15055-15066
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Photometabolic pathways of chlorantraniliprole in aqueous slurries containing binary and ternary oxides of Zn and Ti
Chemical Engineering Journal, Vol. 264, pp. 720-727
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Reclamation of Water Polluted with Flubendiamide Residues by Photocatalytic Treatment with Semiconductor Oxides
Photochemistry and Photobiology, Vol. 91, Núm. 5, pp. 1088-1094
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Use of different organic wastes as strategy to mitigate the leaching potential of phenylurea herbicides through the soil
Environmental Science and Pollution Research, Vol. 22, Núm. 6, pp. 4336-4349
2014
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Abatement of spinosad and indoxacarb residues in pure water by photocatalytic treatment using binary and ternary oxides of Zn and Ti
Environmental Science and Pollution Research, pp. 12143-12153
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Assessment of agro-industrial and composted organic wastes for reducing the potential leaching of triazine herbicide residues through the soil
Science of the Total Environment, Vol. 493, pp. 124-132
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Fipronil decomposition in aqueous semiconductor suspensions using UV light and solar energy
Journal of the Taiwan Institute of Chemical Engineers, Vol. 45, Núm. 3, pp. 981-988
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Solarization and biosolarization using organic wastes for the bioremediation of soil polluted with terbuthylazine and linuron residues
Journal of Environmental Management, Vol. 143, pp. 106-112
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Use of different organic wastes in reducing the potential leaching of propanil, isoxaben, cadusafos and pencycuron through the soil
Journal of Environmental Science and Health - Part B Pesticides, Food Contaminants, and Agricultural Wastes, Vol. 49, Núm. 8, pp. 601-608
2013
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Abatement kinetics of 30 Sulfonylurea herbicide residues in water byphotocatalytic treatment with semiconductor materials
Journal of Environmental Management, Vol. 130, pp. 361-368
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Degradation intermediates and reaction pathway of carbofuran in leaching water using TiO2 and ZnO as photocatalyst under natural sunlight
Journal of Photochemistry and Photobiology A: Chemistry, Vol. 251, pp. 33-40
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Photocatalytic degradation of substituted phenylurea herbicides in aqueous semiconductor suspensions exposed to solar energy
Chemosphere, Vol. 91, Núm. 5, pp. 571-578