262
K. M. G. Mostofa et al.
Draper WM, Crosby DG (1984) Solar photooxidation of pesticides in dilute H 2 O 2 . J Agric Food
Chem 32:231–237
Duesterberg CK, Waite TD (2006) Process optimization of Fenton oxidation using kinetic modeling. Environ Sci Technol 40:4189–4195
Duesterberg CK, Cooper WJ, Waite TD (2005) Fenton-mediated oxidation in the presence and
absence of oxygen. Environ Sci Technol 39:5052–5058
Duesterberg CK, Mylon SE, Waite TD (2008) pH effects on iron-catalyzed oxidation using
Fenton’s reagent. Envion Sci Technol 42:8522–8527
Dykens JA, Shick JM, Benoit C, Buettner GR, Winston GW (1992) Oxygen radical production in the sea anemone Anthopleura Elegantissima and its endosymbiotic algae. J Exp Biol
168:219–241
Emilio CA, Jardim WF, Littera MI, Mansilla HD (2002) EDTA destruction using the solar ferrioxalate AOT comparison with solar photo-Fenton. J Photochem Photobiol A Chem
151:121–127
Emmenegger L, Schwarzenbach R, Sigg L, Sulzberger B (2001) Light-induced redox cycling of
iron in circumneutral lakes. Limnol Oceanogr 46:49–61
Ervens B, Gligorovski B, Herrmann H (2003) Temperature-dependent rate constants for hydroxyl
radical reactions with organic compounds in aqueous solutions. Phys Chem Chem Phys
5:1811–1824
Fang X, Mark G, von Sonntag C (1996) OH radical formation by ultrasound in aqueous solutions
part I: the chemistry underlying the terephthalate dosimeter. Ultrason Sonochem 3:57–63
Farias J, Rossetti GH, Albizzati ED, Alfano OM (2007) Solar degradation of formic acid: temperature effects on the photo-Fenton reaction. Ind Eng Chem Res 46:7580–7586
Farias J, Albizzati ED, Alfano OM (2010) New pilot-plant photo-Fenton solar reactor for water
decontamination. Ind Eng Chem Res 49:1265–1273
Faust BC (1994) A review of the photochemical redox reactions of iron species in atmosphere, oceanic,
and surface waters: influences of geochemical cycles and oxidant formation. Helz GR, Zepp RG,
Crosby DG (eds) Aquatic and surface photochemistry. Lewis Publishers, Boca Raton, pp 3–38
Faust BC, Allen JM (1992) Aqueous-phase photochemical sources of peroxyl radicals and singlet
molecular-oxygen in clouds and fog. J Geophys Res Atmos 97(D12):12913–12926
Faust BC, Hoigne J (1987) Sensitized photooxidation of phenols by fulvic acid and in natural
waters. Environ Sci Technol 21:957–964
Faust BC, Zepp RG (1993) Photochemistry of aqueous iron(III)-polycarboxylate complexes:
roles in the chemistry of atmospheric and surface waters. Environ Sci Technol 27:2517–2522
Fenton HJ (1894) Oxidation of tartaric acid in presence of iron. J Chem Soc 65:899–910
Fischer AM, Kliger DS, Winterle JS, Mill T (1985) Direct observations of phototransients in natural waters. Chemosphere 14:1299–1306
Fox MA (1993) The role of hydroxyl radicals in the photocatalyzed detoxification of organic pollutants—pulse-radiolysis and time-resolved diffuse-reflectance measurements. In: Ollis DF,
Alekabi H (eds) Trace metals in the environment, 3, pp 163–167
Fu P, Mostofa KMG, Wu FC, Liu CQ, Li W, Liao H, Wang L, Wang J, Mei Y (2010) Excitationemission matrix characterization of dissolved organic matter sources in two eutrophic lakes
(Southwestern China Plateau). Geochem J 44:99–112
Gallard H, De Laat J Legube B (1998) Effect of pH on the oxidation rate of organic compounds
by FeII/H 2 O 2 mechanisms and simulation. New J Chem 22:263–268
Gan D, Jia M, Vaughan PP, Falvey DE, Blough NV (2008) Aqueous photochemistry of methylbenzoquinone. J Phys Chem A 112:2803–2812
Gao H, Zepp RG (1998) Factors influencing photoreactions of dissolved organic matter in a
coastal river of the southern United States. Environ Sci Technol 32:2940–2946
Gjessing ET, Källqvist T (1991) Algicidal and chemical effect of uv-radiation of water containing humic substances. Water Res 25:491–494
Goldstein S, Rabani J (2008) Polychromatic UV photon irradiance measurements using chemical
actinometers based on NO 3
− and H 2 O 2 excitation: applications for industrial photoreactors.
Environ Sci Technol 42:3248–3253
Précédent

- 266/919

Suivant