Screening of Fe–BEA catalysts for wet hydrogen peroxide oxidation of crude olive mill wastewater under mild conditions
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[1] S. Preis,et al. The activation of heterogeneous Fenton-type catalyst Fe-MFI , 2008 .
[2] S. Sayadi,et al. Catalytic wet peroxide photo-oxidation of phenolic olive oil mill wastewater contaminants: Part II. Degradation and detoxification of low-molecular mass phenolic compounds in model and real effluent , 2007 .
[3] Siglinda Perathoner,et al. Wet hydrogen peroxide catalytic oxidation of olive oil mill wastewaters using Cu-zeolite and Cu-pillared clay catalysts , 2007 .
[4] S. Sayadi,et al. Catalytic wet peroxide photo-oxidation of phenolic olive oil mill wastewater contaminants: Part I. Reactivity of tyrosol over (Al–Fe)PILC , 2007 .
[5] A. Katović,et al. Investigation of the catalytic wet peroxide oxidation of phenol over different types of Cu/ZSM-5 catalyst. , 2007, Journal of hazardous materials.
[6] Natalija Koprivanac,et al. Fe-exchanged zeolite as the effective heterogeneous Fenton-type catalyst for the organic pollutant minimization: UV irradiation assistance. , 2006, Chemosphere.
[7] F. Martínez,et al. Nanocomposite of crystalline Fe2O3 and CuO particles and mesostructured SBA-15 silica as an active catalyst for wet peroxide oxidation processes , 2006 .
[8] Z. Gomzi,et al. CWPO: An Environmental Solution for Pollutant Removal from Wastewater , 2005 .
[9] Raúl Molina,et al. Crystallization mechanism of Fe-MFI from wetness impregnated Fe2O3–SiO2 amorphous xerogels: Role of iron species in Fenton-like processes , 2004 .
[10] V. N. Parmon,et al. Heterogeneous catalysis in the Fenton-type system FeZSM-5/H2O2 , 2004 .
[11] G. Centi,et al. Performance of Fe-BEA catalysts for the selective hydroxylation of benzene with N2O , 2004 .
[12] O. Anunziata,et al. Fe-containing ZSM-11 zeolites as active catalyst for SCR of NOx: Part I. Synthesis, characterization by XRD, BET and FTIR and catalytic properties , 2004 .
[13] N. Crowther. Iron-containing silicalites for phenol catalytic wet peroxidation , 2003 .
[14] Carmen Teodosiu,et al. Catalytic wet peroxide oxidation of phenol over Fe-exchanged pillared beidellite. , 2003, Water research.
[15] F. Martínez,et al. Novel heterogeneous catalysts in the wet peroxide oxidation of phenol. , 2001, Water science and technology : a journal of the International Association on Water Pollution Research.
[16] F. Martínez,et al. Wet Peroxide Oxidation of Phenolic Solutions over Different Iron-Containing Zeolitic Materials , 2001 .
[17] W. Hoelderich. Environmentally benign manufacturing of fine and intermediate chemicals , 2000 .
[18] N. Papayannakos,et al. Catalytic wet peroxide oxidation over mixed (Al-Fe) pillared clays , 2000 .
[19] Siglinda Perathoner,et al. Catalytic wet oxidation with H2O2 of carboxylic acids on homogeneous and heterogeneous Fenton-type catalysts , 2000 .
[20] Z. Gabelica,et al. Synthesis of copper bearing MFI zeolites and their activity in wet peroxide oxidation of phenol , 1999 .
[21] H. Gallard,et al. Catalytic Decomposition of Hydrogen Peroxide by Fe(III) in Homogeneous Aqueous Solution: Mechanism and Kinetic Modeling , 1999 .
[22] M. D. Gurol,et al. Catalytic Decomposition of Hydrogen Peroxide on Iron Oxide: Kinetics, Mechanism, and Implications , 1998 .
[23] H. Debellefontaine,et al. Wet oxidation of phenol by hydrogen peroxide using heterogeneous catalysis Fe-ZSM-5: a promising catalyst , 1996 .
[24] F. Luck. A review of industrial catalytic wet air oxidation processes , 1996 .
[25] S. Sayadi,et al. Roles of Lignin Peroxidase and Manganese Peroxidase from Phanerochaete chrysosporium in the Decolorization of Olive Mill Wastewaters. , 1995, Applied and environmental microbiology.
[26] C. Banks,et al. Kinetic model for substrate utilization and methane production during the anaerobic digestion of olive mill wastewater and condensation water waste , 1994 .
[27] N. Gharsallah. Influence of dilution and phase separation on the anaerobic digestion of olive mill wastewaters , 1994 .
[28] S. Girayvelioglu,et al. Activated sludge treatability of olive oil-bearing wastewater , 1992 .
[29] T. de la Rubia,et al. Phenolic content and antibacterial activity of olive oil waste waters , 1992 .
[30] M. Hamdi. Effects of agitation and pretreatment on the batch anaerobic digestion of olive mil , 1991 .
[31] V. Balice,et al. Caratteristiche analitiche delle acque di vegetazione , 1990 .
[32] A. Ramos-Cormenzana,et al. Studies on antibacterial activity of waste waters from olive oil mills (alpechin) : inhibitory activity of phenolic and fatty acids , 1990 .
[33] A. Rozzi,et al. Anaerobic digestion of olive oil mill wastewaters , 1984 .
[34] J. Box. Investigation of the Folin-Ciocalteau phenol reagent for the determination of polyphenolic substances in natural waters , 1983 .
[35] C. Walling. Fenton's reagent revisited , 1975 .