Electrochemical Incineration of Organic Pollutants for Wastewater Treatment: Past, Present and Prospect

作者: Songsak Klamklang , Hugues Vergnes , Kejvalee Pruksathorn , Somsak Damrongler

DOI: 10.5772/31644

关键词: PollutantDistilled waterContaminationPopulationSewage treatmentBiodegradationWastewaterIncinerationEnvironmental scienceWaste management

摘要: Water is a combination of two parts, hydrogen and oxygen as H2O. However, pure water only produced in laboratory, general not composition oxygen. Eventhough, distilled still has measurable quantities various substances such ions, mineral or organic compounds (http://www.environmental-center.com). These should be considered the impurities that dissolved into during flow through hydraulic pathway. Nowadays, there are some increasing on both population consumption natural resources to serve endless needs. most important resource becomes limited use due contamination from discharge domestic industry. The wastewater contains large amount pollutants. Industry also contributes substantial amounts substrates discharged industry contain high toxicity refractory Figure 1 presents example partially closed cycle. In cycle pollutants neither removed by sorption nor biodegradation. Nevertheless, pass all barriers treatment underground passage appear raw waters used for drinking production. other group may originate consumer products household, pesticides applied agriculture chemicals (Reemtsma & Jekel,2006). Wastewater consists applying known technology improve upgrade quality wastewater. Usually will involve collecting central, segregated location subjecting processes (Hanze et al., 1995). can organized categorized nature process operation being physical, chemical biological treatment. Biological polluted economical commonly elimination degradable

参考文章(20)
Agnieszka Kapałka, György Fóti, Christos Comninellis, Basic principles of the electrochemical mineralization of organic pollutants for wastewater treatment Electrochemistry for the Environment, New York: Springer. pp. 1- 23 ,(2010) , 10.1007/978-0-387-68318-8_1
A. Morão, A. Lopes, M.T. Pessoa de Amorim, I.C. Gonçalves, Degradation of mixtures of phenols using boron doped diamond electrodes for wastewater treatment Electrochimica Acta. ,vol. 49, pp. 1587- 1595 ,(2004) , 10.1016/J.ELECTACTA.2003.11.020
Ch. Comninellis, G. P. Vercesi, Characterization of DSA-type oxygen evolving electrodes: choice of a coating Journal of Applied Electrochemistry. ,vol. 21, pp. 335- 345 ,(1991) , 10.1007/BF01020219
A.V. Diniz, N.G. Ferreira, E.J. Corat, V.J. Trava-Airoldi, Efficiency study of perforated diamond electrodes for organic compounds oxidation process Diamond and Related Materials. ,vol. 12, pp. 577- 582 ,(2003) , 10.1016/S0925-9635(02)00381-3
Songsak Klamklang, Hugues Vergnes, François Senocq, Kejvalee Pruksathorn, Patrick Duverneuil, Somsak Damronglerd, Deposition of tin oxide, iridium and iridium oxide films by metal-organic chemical vapor deposition for electrochemical wastewater treatment Journal of Applied Electrochemistry. ,vol. 40, pp. 997- 1004 ,(2010) , 10.1007/S10800-009-9968-1
M. Panizza, G. Cerisola, Application of diamond electrodes to electrochemical processes Electrochimica Acta. ,vol. 51, pp. 191- 199 ,(2005) , 10.1016/J.ELECTACTA.2005.04.023
Geert Lissens, Jan Pieters, Marc Verhaege, Luc Pinoy, Willy Verstraete, Electrochemical degradation of surfactants by intermediates of water discharge at carbon-based electrodes Electrochimica Acta. ,vol. 48, pp. 1655- 1663 ,(2003) , 10.1016/S0013-4686(03)00084-7
A. Mottram Couper, Derek Pletcher, Frank C. Walsh, Electrode materials for electrosynthesis Chemical Reviews. ,vol. 90, pp. 837- 865 ,(1990) , 10.1021/CR00103A010
Ch. Comninellis, A. Nerini, Anodic oxidation of phenol in the presence of NaCl for wastewater treatment Journal of Applied Electrochemistry. ,vol. 25, pp. 23- 28 ,(1995) , 10.1007/BF00251260