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Removal of organic compounds from wastewater originating from the production of printed circuit boards by UV-Fenton method

Removal of organic compounds from wastewater originating from the production of printed circuit... ReferencesAzami, M., Bahram, M., Nouri, S. & Naseri, A. (2012). A central composite design for the optimization of the removal of the azo dye, methyl orange, from wastewater using the Fenton reaction, Journal of the Serbian Chemical Society, 77, 2, pp. 235-246.Barbusiński, K. (2009). Fenton Reaction - controversy concerning the chemistry, Ecological Chemistry and Engineering S, 16, 3, pp. 347-358.Barbusiński, K. (2004). The intensifi cation of wastewater treatment and stabilization of excess sludge using Fenton’s reagent, Zeszyty Naukowe Politechniki Śląskiej, Gliwice. (in Polish) Barbusiński, K. & Majewski, M. (2003). Discoloration of azo dye Acid Red 18 by Fenton reagent in the presence of iron powder, Polish Journal of Environmental Studies, 12, 2, pp. 151-155.Barbusiński, K. (2006). Modifi cation of the Fenton reaction using calcium and magnesium peroxides, Wydawnictwo GIG, Katowice 2006. (in Polish)Barbusinski, K. & Fajkis, S. (2011). Optimization of the Fenton oxidation of wastewater generated by rape oil soapstock splitting, Environmental Progress & Sustainable Energy, 30, 4, pp. 620-631.Cao, X., Lou, H., Wei, W. & Zhu, L. (2014). Treatment of tetrahydrofuran wastewater by the Fenton process: response surface methodology as an optimization tool, Water Science and Technology, 69, 5, pp. 1080-1087.Coombs, C.F. & Holden, H.T. (1996). Printed Circuits Handbook. Fourth Edition, McGraw-Hill, New York 1996.Dunford, H.B. (2002). Oxidations of iron (II)/(III) by hydrogen peroxide: from aquo to enzyme, Coordination Chemistry Reviews, 233-234, pp. 311-318.LaDou, J. (2006). Printed circuit board industry, International Journal of Hygiene and Environmental Health, 209, pp. 211-219.Lou, J-Ch., Huang, Y-J. & Han, J-Y. (2009). Treatment of printed circuit board industrial wastewater by Ferrite process combined with Fenton method, Journal of Hazardous Materials, 170, 2, 3, pp. 620-626.Maha, Z.B. & Tony, A. (2014). Experimental design of photo-Fenton reactions for the treatment of car wash wastewater effl uents by Response Surface Methodological Analysis, Advances in Environmental Chemistry, pp. 1-8.Michalski, J. (1992). Technology and assembly of printed circuit boards, Wydawnictwo Naukowo-Techniczne, Warszawa 1992. (in Polish)Mika, M. (1983). Printed circuits board, Wydawnictwo Komunikacji i Łączności, Warszawa 1983. (in Polish)Hartinger, L. (1991). Handbook of wastewater and recycling technology for the metalworking industry, Carl Hanser Verlag, Muenchen, Wien 1991. (in German)Gliklich, T., Gliklich, B., Pęciak, G., Stohryn, T. & Kapko, T. (2006). The project of wastewater treatment plant, pp. 1-15. INSTER Tychy 2006. (in Polish).Shipley Company LLC (1994). Procedure WT 94-5 wastewater treatment of spent sodium hydoxide stripper for use with PEPR2400 PHOTORESIST, pp. 1-3.Grychtolik, E., Gryglewicz, A., Gryglewicz, T., Sładki, A. & Kuryatto, M. (1990). Wastewater treatment RISTON III, Zakład Elektroniki Górniczej, Tychy, pp. 1-8. (in Polish)Keller, R. & Goosey, M. (1999). The printed circuit board industry an environmental best practice guide, PCIF, London 1999. Parson, S. (2004). Advanced Oxidation Processes for Water and Wastewater Treatment, IWA Publishing, London 2004.PN-EN ISO 10523:2012 Water Quality. Determination of pH.PN-EN ISO 7027-1:2016-09 Water Quality. Determination of turbidity.PN-ISO 15705:2005 Water Quality. Determination of the Chemical Oxygen Demand Index. Small-scale. Sealed-tube Method.PN-EN 1484:1999 Water Analysis. Guidelines for the determination of Total Organic Carbon (TOC) and Dissolved Organic Carbon (DOC).PN ISO 9297:1994 Water Quality. Determination of Chloride. Silver nitrate titration with chromate indicator (Mohr’s method).PN ISO 9280: 2002 Water Quality. Determination of sulfate. Gravimetric method using barium chloride.PN-EN ISO 11885:2007 Water Quality. Determination of selected elements by inductively coupled plasma optical emission spectrometry (ICP-OES).BN-89/6191-04 Reagents. Hydrogen peroxide 30% solution. Pouran, S.R., Aziz, A.R.A. & Daud, W.M.A.W. (2015). Review on the main advances in photo-Fenton oxidation system for recalcitrant wastewaters, Journal of Industrial and Engineering Chemistry, 21, pp. 53-69.Stasinakis, A.S. (2008). Use of selected advanced oxidation processes (AOPs) for wastewater treatment - a mini review, Global NEST Journal, 10, 3, pp. 376-385.Thomas, M., Białecka, B. & Zdebik, D. (2016). Treatment of wastewater from the photochemical production of printed circuit boards by using Fenton reagent after addition of calcium percarbonate, Przemysł Chemiczny, 11, pp. 134-139. (in Polish)Thomas, M., Białecka, B. & Zdebik, D (2015). Treatment of wastewater from the photochemical production of printed circuit boards by using Fenton reagent after addition of disodium percarbonate, Przemysł Chemiczny, 94, 6, pp. 924-929. (in Polish)Talinli, I. & Anderson, G.K., (1992). Interference of hydrogen peroxide on the standard COD test, Water Research, 26, 1, pp. 107-110. Zieliński, R. (2007). Application of experimental design method in optimization of glucose-based surfactant production process, Towaroznawcze Problemy Jakości, 4, pp. 73-80. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Archives of Environmental Protection de Gruyter

Removal of organic compounds from wastewater originating from the production of printed circuit boards by UV-Fenton method

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de Gruyter
Copyright
© Archives of Environmental Protection
ISSN
2083-4810
eISSN
2083-4810
DOI
10.1515/aep-2017-0044
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Abstract

ReferencesAzami, M., Bahram, M., Nouri, S. & Naseri, A. (2012). A central composite design for the optimization of the removal of the azo dye, methyl orange, from wastewater using the Fenton reaction, Journal of the Serbian Chemical Society, 77, 2, pp. 235-246.Barbusiński, K. (2009). Fenton Reaction - controversy concerning the chemistry, Ecological Chemistry and Engineering S, 16, 3, pp. 347-358.Barbusiński, K. (2004). The intensifi cation of wastewater treatment and stabilization of excess sludge using Fenton’s reagent, Zeszyty Naukowe Politechniki Śląskiej, Gliwice. (in Polish) Barbusiński, K. & Majewski, M. (2003). Discoloration of azo dye Acid Red 18 by Fenton reagent in the presence of iron powder, Polish Journal of Environmental Studies, 12, 2, pp. 151-155.Barbusiński, K. (2006). Modifi cation of the Fenton reaction using calcium and magnesium peroxides, Wydawnictwo GIG, Katowice 2006. (in Polish)Barbusinski, K. & Fajkis, S. (2011). Optimization of the Fenton oxidation of wastewater generated by rape oil soapstock splitting, Environmental Progress & Sustainable Energy, 30, 4, pp. 620-631.Cao, X., Lou, H., Wei, W. & Zhu, L. (2014). Treatment of tetrahydrofuran wastewater by the Fenton process: response surface methodology as an optimization tool, Water Science and Technology, 69, 5, pp. 1080-1087.Coombs, C.F. & Holden, H.T. (1996). Printed Circuits Handbook. Fourth Edition, McGraw-Hill, New York 1996.Dunford, H.B. (2002). Oxidations of iron (II)/(III) by hydrogen peroxide: from aquo to enzyme, Coordination Chemistry Reviews, 233-234, pp. 311-318.LaDou, J. (2006). Printed circuit board industry, International Journal of Hygiene and Environmental Health, 209, pp. 211-219.Lou, J-Ch., Huang, Y-J. & Han, J-Y. (2009). Treatment of printed circuit board industrial wastewater by Ferrite process combined with Fenton method, Journal of Hazardous Materials, 170, 2, 3, pp. 620-626.Maha, Z.B. & Tony, A. (2014). Experimental design of photo-Fenton reactions for the treatment of car wash wastewater effl uents by Response Surface Methodological Analysis, Advances in Environmental Chemistry, pp. 1-8.Michalski, J. (1992). Technology and assembly of printed circuit boards, Wydawnictwo Naukowo-Techniczne, Warszawa 1992. (in Polish)Mika, M. (1983). Printed circuits board, Wydawnictwo Komunikacji i Łączności, Warszawa 1983. (in Polish)Hartinger, L. (1991). Handbook of wastewater and recycling technology for the metalworking industry, Carl Hanser Verlag, Muenchen, Wien 1991. (in German)Gliklich, T., Gliklich, B., Pęciak, G., Stohryn, T. & Kapko, T. (2006). The project of wastewater treatment plant, pp. 1-15. INSTER Tychy 2006. (in Polish).Shipley Company LLC (1994). Procedure WT 94-5 wastewater treatment of spent sodium hydoxide stripper for use with PEPR2400 PHOTORESIST, pp. 1-3.Grychtolik, E., Gryglewicz, A., Gryglewicz, T., Sładki, A. & Kuryatto, M. (1990). Wastewater treatment RISTON III, Zakład Elektroniki Górniczej, Tychy, pp. 1-8. (in Polish)Keller, R. & Goosey, M. (1999). The printed circuit board industry an environmental best practice guide, PCIF, London 1999. Parson, S. (2004). Advanced Oxidation Processes for Water and Wastewater Treatment, IWA Publishing, London 2004.PN-EN ISO 10523:2012 Water Quality. Determination of pH.PN-EN ISO 7027-1:2016-09 Water Quality. Determination of turbidity.PN-ISO 15705:2005 Water Quality. Determination of the Chemical Oxygen Demand Index. Small-scale. Sealed-tube Method.PN-EN 1484:1999 Water Analysis. Guidelines for the determination of Total Organic Carbon (TOC) and Dissolved Organic Carbon (DOC).PN ISO 9297:1994 Water Quality. Determination of Chloride. Silver nitrate titration with chromate indicator (Mohr’s method).PN ISO 9280: 2002 Water Quality. Determination of sulfate. Gravimetric method using barium chloride.PN-EN ISO 11885:2007 Water Quality. Determination of selected elements by inductively coupled plasma optical emission spectrometry (ICP-OES).BN-89/6191-04 Reagents. Hydrogen peroxide 30% solution. Pouran, S.R., Aziz, A.R.A. & Daud, W.M.A.W. (2015). Review on the main advances in photo-Fenton oxidation system for recalcitrant wastewaters, Journal of Industrial and Engineering Chemistry, 21, pp. 53-69.Stasinakis, A.S. (2008). Use of selected advanced oxidation processes (AOPs) for wastewater treatment - a mini review, Global NEST Journal, 10, 3, pp. 376-385.Thomas, M., Białecka, B. & Zdebik, D. (2016). Treatment of wastewater from the photochemical production of printed circuit boards by using Fenton reagent after addition of calcium percarbonate, Przemysł Chemiczny, 11, pp. 134-139. (in Polish)Thomas, M., Białecka, B. & Zdebik, D (2015). Treatment of wastewater from the photochemical production of printed circuit boards by using Fenton reagent after addition of disodium percarbonate, Przemysł Chemiczny, 94, 6, pp. 924-929. (in Polish)Talinli, I. & Anderson, G.K., (1992). Interference of hydrogen peroxide on the standard COD test, Water Research, 26, 1, pp. 107-110. Zieliński, R. (2007). Application of experimental design method in optimization of glucose-based surfactant production process, Towaroznawcze Problemy Jakości, 4, pp. 73-80.

Journal

Archives of Environmental Protectionde Gruyter

Published: Dec 1, 2017

References