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Publication Title: 3rd International Conference on Bioinformatics and Biomedical Engineering (iCBBE 2009)
Article Title: Integrated Fenton Oxidation Process for Advanced Treatment of Biologically Treated Coking Plant Effluent

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Record 1 from Inspec for: ((Integrated Fenton Oxidation Process for Advanced Treatment of Biologically Treated Coking Plant Effluent) WN All fields), 1884-2009

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  1.   Accession number:  10777918

Title:  Integrated Fenton oxidation process for advanced treatment of biologically treated coking plant effluent

Authors:  Wenxing Jiang1 ; Guangyu Zhang1 ; Weichi Ying  

Author affiliation:  1  Lab. of Environ. Protection in Water Transp. Eng., Tianjin Res. Inst. of Water Transp. Eng., Tianjin, China


Source:  2009 3rd International Conference on Bioinformatics and Biomedical Engineering (iCBBE 2009)

Publication date:  2009

Pages:  4 pp.

Language:  English

ISBN-13:  978-1-4244-2901-1

Document type:  Conference article (CA)

Conference name:  2009 3rd International Conference on Bioinformatics and Biomedical Engineering (iCBBE 2009)

Conference date:  11-16 June 2009

Conference location:  Beijing, China

Publisher:  IEEE

Place of publication:  Piscataway, NJ, USA

Material Identity Number:  YXA9-1901-220

Abstract:  Experiments of Fenton oxidation, carbon adsorption, and Fenton oxidation plus carbon adsorption were conducted to develop a cost effective advanced treatment process for treating a biotreated coking plant effluent. Fenton oxidation (Fe2+ = 56 mg/L and H2O2 = 27.2 mg/L) was effective for removing >50% organic pollutants, measured as UV254 (aromatic organics), ViS380 (color ingredients) and COD and most total cyanide present in the effluent. Fenton oxidation enhanced adsorptive capacities of activated carbon for the residual contaminants and made them more biodegradable. The Fenton oxidation followed by adsorption and biodegradation in a biological activated carbon (BAC) adsorber is an attractive advanced treatment process to recycle the final effluent for many reuses while meeting the anticipated much more stringent discharge limits of the future.

Number of references:  14

Inspec controlled terms:  activated carbon  -  adsorption  -  biodegradable materials  -  biotechnology  -  coke  -  contamination  -  effluents  -  environmental degradation  -  industrial pollution  -  industrial waste   -  oxidation  -  recycling  -  waste recovery

Uncontrolled terms:  integrated Fenton oxidation process  -  biotreated coking plant effluent treatment process  -  carbon adsorption  -  organic pollutants  -  aromatic organics  -  color ingredients  -  COD  -  cyanide  -  activated carbon  -  residual contaminants   -  biodegradation  -  effluent recycling

Inspec classification codes:  E0230 Environmental issues  -  E3624 Fuel processing industry  -  E3628 Biotechnology industry  -  E1525 Industrial processes  -  E1840 Recycling  -  E1710 Engineering materials

Treatment:  Practical (PRA); Experimental (EXP)

Discipline:  Manufacturing and production engineering (E)

DOI:  10.1109/ICBBE.2009.5162974

Database:  Inspec

   Copyright 2009, The Institution of Engineering and Technology
3Â¥2009-12-04 11:59:34
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yimujiang

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Originally posted by kanghe at 2009-12-4 11:59:
Record 1 from Inspec for: ((Integrated Fenton Oxidation Process for Advanced Treatment of Biologically Treated Coking Plant Effluent) WN All fields), 1884-2009

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