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Boron doped diamond , anodes

Bellagamba, R., Michaud, P.-A., Comninellis, Ch. and Vatistas, N. (2002) Electro-combustion of polyacrylates with boron-doped diamond anodes. Electrochem. Commun. 4, 171-176. [Pg.22]

Fig. 2.10 Evolution of COD and ICE inset) with the specific electrical charge passed during the oxidation of 4-chlorophenol (4-CP) on a boron-doped diamond anode. Electrolyte sulfuric acid 1M 7 = 30°C i = 30mA cm-2 initial 4-CP concentration open square) 3.9mM cross) 7.8 mM filled circle) 15.6 mM (Rodrigo et al. 2001)... Fig. 2.10 Evolution of COD and ICE inset) with the specific electrical charge passed during the oxidation of 4-chlorophenol (4-CP) on a boron-doped diamond anode. Electrolyte sulfuric acid 1M 7 = 30°C i = 30mA cm-2 initial 4-CP concentration open square) 3.9mM cross) 7.8 mM filled circle) 15.6 mM (Rodrigo et al. 2001)...
Canizares, P., Saez, C., Lobato, J. and Rodrigo, M. A. (2004b) Electrochemical treatment of 2,4-dinitrophenol aqueous wastes using boron-doped diamond anodes. Electrochim. Acta 49, 4641 1650. [Pg.49]

Fig. 7.8 Chlorate formation in discontinuous experiments using rotating Ir02/Ru02 and boron-doped diamond anode (Ir02 cathode, 50mL, 50ppm chloride, 200 Am-2, 20°C, 300rpm, pH = 7 KH2P04/Na0H buffer)... Fig. 7.8 Chlorate formation in discontinuous experiments using rotating Ir02/Ru02 and boron-doped diamond anode (Ir02 cathode, 50mL, 50ppm chloride, 200 Am-2, 20°C, 300rpm, pH = 7 KH2P04/Na0H buffer)...
The past two decades have seen the establishment of a very extensive literature on the application of boron-doped diamond electrodes for the decoloration and the removal of COD and TOC from effluents, the disinfection and quality improvement of water, and the complete oxidation of particular organic molecules [26, 38, 39, 71-75]. There can be no doubt that boron-doped diamond anodes allow the effective killing of microorganisms and the complete oxidation of a wide range of organic compounds to carbon dioxide (and other inorganic fragments). Both direct and indirect mechanisms have been invoked. The direct mechanisms involve electron transfer and oxidation via weakly adsorbed OH radicals, while the indirect mechanisms have seen a role for solution-free OH radicals, ozone, sulfate radicals, or chlorine compounds if suitable anions are present or added. Indirect routes via ozone [20, 21] and sulfate radicals [40, 74, 76-78] can, of course, become dominant with appropriate selection of the conditions. This literature has been extensively reviewed and the interested reader is referred to these reviews [26, 38, 39, 71-75]. [Pg.328]

Anglada, A., Urtiaga, A. Ortiz, 1. 2009. Pilot scale performance of flie electro-oxidation of landfill leachate at boron-doped diamond anode. Environmental Science Technology 43(6) 2035-2040. [Pg.155]

Boron-Doped Diamond for Green Electro-Organk Synthesis, Scheme 1 Working mode of boron-doped diamond anodes... [Pg.144]

Li H, Zhu X, Ni J (2010) Inactivation of Escherichia coli in Na2S04 electrolyte using boron doped diamond anode. Electrochim Acta 56 448 53... [Pg.342]

Bergmann MEH, Rollin J (2007) Product and byproduct formation in disinfection electrolysis of drinking water using boron-doped diamond anodes. Catal Today 124 198-203... [Pg.342]

Cabeza A, Urtiaga A, Ortiz I (2007) Electrochemical treatment of landfill leachates using a boron-doped diamond anode. Ind Eng Chem Res 46 1439-1446... [Pg.643]

Anglada A, Urtiaga A, Ortiz 1, Mantzavinos D, Diamadopoulos E (2011) Boron-doped diamond anodic treatment of landfill leachate evaluation of operating variables and formation of oxidation byproducts. Wat Res 45 828-838... [Pg.643]

Anglada A (2011) Electro-oxidation on boron-doped diamond anodes of ammonia and organic pollutants in landfill leachate. PhD dissertation thesis, University of Cantabria, Spain... [Pg.644]

Saez C, Panizza M, Rodrigo MA, Cerisola G (2007) Electrochemical incineration of dyes using a boron-doped diamond anode. J Chem Technol Biotechnol 82 575-581... [Pg.1428]

Canizares P, Larrondo F, Lobato J, Rodrigo MA, Saez C (2005) Electrochemical synthesis of peroxodi-phosphate using boron-doped diamond anodes. J Electrochem Soc 152(11) D191-D196... [Pg.2131]

Weiss E, Saez C, Groenen Serrano K, Canizares P, Savall A, Rodrigo M (2008) Electrochemical synthesis of peroxomonophosphate using boron doped diamond anodes. J Appl Electrochem 38(1) 93-100... [Pg.2131]

Smchez-Carretero A, Rodrigo MA, Canizares P, Saez C (2010) Electrochemical synthesis of ferrate in presence ultrasound using boron doped diamond anodes. Electrochem Commun 12 644—646... [Pg.2147]

Ratiu C, Manea F, Lazau C, Grozescu I, Radavon C, Schoonman J (2010) Electrochemical oxidation of p-aminophenol from water with boron-doped diamond anodes and assisted photocatalytically by HOo-supported zeolite. Desalination 260(l-3) 51-56. doi 10.1016/i. desal.2010.04.068... [Pg.343]

Nasr B, Abdellatif G, Canizares P et al (2005) Electrochemical oxidation of hydroquinone, resorcinol, and catechol on boron-doped diamond anodes. Environ Sci Technol 39 7234-7239... [Pg.252]


See other pages where Boron doped diamond , anodes is mentioned: [Pg.248]    [Pg.223]    [Pg.224]    [Pg.225]    [Pg.329]    [Pg.239]   
See also in sourсe #XX -- [ Pg.7 , Pg.9 , Pg.11 , Pg.12 , Pg.13 , Pg.14 , Pg.15 , Pg.16 , Pg.30 , Pg.43 , Pg.46 , Pg.126 , Pg.130 , Pg.138 , Pg.164 , Pg.176 , Pg.181 , Pg.185 , Pg.186 , Pg.189 , Pg.205 , Pg.215 , Pg.220 , Pg.229 , Pg.230 , Pg.231 , Pg.232 , Pg.236 , Pg.242 , Pg.243 , Pg.312 , Pg.521 , Pg.522 , Pg.540 , Pg.548 ]




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