Combined process for 2,4-Dichlorophenoxyacetic acid treatment—Coupling of an electrochemical system with a biological treatment
暂无分享,去创建一个
A. Amrane | J. Fontmorin | F. Fourcade | F. Geneste | D. Floner | S. Huguet
[1] A. Amrane,et al. Electrochemical oxidation of 2,4-Dichlorophenoxyacetic acid: Analysis of by-products and improvement of the biodegradability , 2012 .
[2] A. Amrane,et al. Feasibility of an electrochemical pre-treatment prior to a biological treatment for tetracycline removal , 2011 .
[3] A. Amrane,et al. Relevance of an electrochemical process prior to a biological treatment for the removal of an organophosphorous pesticide, phosmet. , 2010, Journal of hazardous materials.
[4] Lei Liu,et al. Integrated Biological and Electrochemical Oxidation Treatment for High Toxicity Pesticide Pollutant , 2010 .
[5] M. Aroua,et al. Bio-electrochemical removal of nitrate from water and wastewater--a review. , 2008, Bioresource technology.
[6] N. Singhal,et al. Biodegradation of agricultural herbicides in sequencing batch reactors under aerobic or anaerobic conditions. , 2008, Water research.
[7] M. I. Maldonado,et al. Coupled solar photo-Fenton and biological treatment for the degradation of diuron and linuron herbicides at pilot scale. , 2008, Chemosphere.
[8] M. Centeno,et al. Photocatalytic degradation of 2,4-dichlorophenoxyacetic acid using nanocrystalline cryptomelane composite catalysts , 2008 .
[9] H. Albrechtsen,et al. Effect of nutrient amendments and sterilization on mineralization and/or biodegradation of 14C-labeled MCPP by soil bacteria under aerobic conditions , 2007 .
[10] R. Bertazzoli,et al. Oxidation of pesticides by in situ electrogenerated hydrogen peroxide: study for the degradation of 2,4-dichlorophenoxyacetic acid. , 2006, Journal of hazardous materials.
[11] H. Doan,et al. Combined electrochemical and biological treatment of industrial wastewater using porous electrodes , 2006 .
[12] K. Oh,et al. Degradation of 2,4-dichlorophenoxyacetic acid by mixed cultures of bacteria , 1990, Journal of Industrial Microbiology.
[13] S. B. Sawant,et al. Photocatalytic Degradation of 2,4-Dichlorophenoxyacetic Acid Using Concentrated Solar Radiation: Batch and Continuous Operation , 2004 .
[14] P. Gehringer,et al. Decomposition of 2,4-dichlorophenoxyacetic acid by ozonation, ionizing radiation as well as ozonation combined with ionizing radiation , 2004 .
[15] Guohua Chen,et al. Synergetic degradation of 2,4-D by integrated photo- and electrochemical catalysis on a Pt doped TiO2/Ti electrode , 2004 .
[16] Enric Brillas,et al. Degradation of the herbicide 2,4-dichlorophenoxyacetic acid by ozonation catalyzed with Fe2+ and UVA light , 2003 .
[17] J. Aamand,et al. Mineralization of aged atrazine, terbuthylazine, 2,4‐D, and mecoprop in soil and aquifer sediment , 2003, Environmental toxicology and chemistry.
[18] C. Pulgarin,et al. Recent developments in the coupling of photoassisted and aerobic biological processes for the treatment of biorecalcitrant compounds , 2002 .
[19] A. Laganà,et al. Occurrence and determination of herbicides and their major transformation products in environmental waters , 2002 .
[20] S. Parra,et al. New integrated photocatalytic-biological flow system using supported TiO2 and fixed bacteria for the mineralization of isoproturon , 2002 .
[21] A. Lemley,et al. Kinetic model and optimization of 2,4-D degradation by anodic Fenton treatment. , 2001, Environmental science & technology.
[22] M. DeLorenzo,et al. Toxicity of pesticides to aquatic microorganisms: A review , 2001, Environmental toxicology and chemistry.
[23] Franco Mazzei,et al. Inhibition‐based biosensors for the detection of environmental contaminants: Determination of 2, 4‐dichlorophenoxyacetic acid , 2000 .
[24] X. Doménech,et al. 2,4-Dichlorophenoxyacetic acid degradation by catalyzed ozonation: TiO2/UVA/O3 and Fe(II)/UVA/O3 systems , 2000 .
[25] E. Brillas,et al. Mineralization of 2,4-D by advanced electrochemical oxidation processes , 2000 .
[26] M. Younes,et al. Pesticides in drinking water--a case study. , 2000, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[27] A. Fernández-Alba,et al. Pesticide chemical oxidation: state-of-the-art. , 2000 .
[28] C. Pulgarin,et al. Strategy for the coupling of photochemical and biological flow reactors useful in mineralization of biorecalcitrant industrial pollutants , 1999 .
[29] P. Elefsiniotis,et al. BIODEGRADATION OF THE HERBICIDE 2, 4-DICHLOROPHENOXYACETIC ACID (2, 4-D) IN SEQUENCING BATCH REACTORS , 1999 .
[30] O. Lev,et al. Photocatalytic oxidation of 2,4-dichlorophenoxyacetic acid with titania photocatalyst. Comparison of supported and suspended TiO2 , 1998 .
[31] J. Geronimo,et al. 2,4‐D dissipation in field soils after applications of 2,4‐D dimethylamine salt and 2,4‐D 2‐ethylhexyl ester , 1997 .
[32] C. A. Reddy,et al. Mineralization of 2,4-Dichlorophenoxyacetic Acid (2,4-D) and Mixtures of 2,4-D and 2,4,5-Trichlorophenoxyacetic Acid by Phanerochaete chrysosporium , 1993, Applied and environmental microbiology.
[33] R. Perry,et al. Behaviour of chlorophenoxy herbicides during the activated sludge treatment of municipal waste water , 1986 .
[34] M. Korhola,et al. Degradation of 2-methyl-4-chlorophenoxyacetic acid (MCPA), 2,4-dichlorophenoxyacetic acid (2,4-D), benzoic acid and salicylic acid by Pseudomonas sp. HV3 , 1980 .
[35] P. Fisher,et al. Isolation and characterization of the pesticide-degrading plasmid pJP1 from Alcaligenes paradoxus , 1978, Journal of bacteriology.
[36] H. N. Fernley,et al. Bacterial metabolism of 2,4-dichlorophenoxyacetate. , 1971, The Biochemical journal.
[37] J. Duxbury,et al. 2,4-D metabolism: pathway of degradation of chlorocatechols by Arthrobacter sp. , 1969, Journal of agricultural and food chemistry.
[38] M. Alexander,et al. 2,4-D metabolism. Enzymic degradation of chloropyrocatechols , 1968 .