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Erschienen in: Clean Technologies and Environmental Policy 3/2015

01.03.2015 | Original paper

Combining activated sludge process with membrane separation to obtain recyclable quality water from paper mill effluent

verfasst von: Sudheer Kumar Shukla, Vivek Kumar, Tuan Van Doan, Keunje Yoo, Younkyung Kim, Joonhong Park

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 3/2015

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Abstract

The present study was carried out for the treatment of paper mill effluent using combination of activated sludge process and membrane separation. An integrated paper mill employing OCEOPHH sequence (oxidation, chlorination, alkali extraction re-enforced by oxygen and peroxide, hypo-1, and hypo-2) for the bleaching of hardwood pulp was selected for the study. The purpose of this work was to examine the water quality and membrane performance when combining activated sludge process with different membrane separation processes in series. Pollutant removal including adsorbable organic halides (AOX) was compared among different treatment combinations; (i) ASP + microfiltration (MF), (ii) ASP +MF + ultrafiltration (UF), (iii) ASP +MF + UF + nanofiltration (NF), and (iv) ASP +MF + UF + NF + reverse osmosis (RO) to select the optimal treatment scheme for water recycling in the paper mill. Different initial inlet pressures were used for the UF and NF (6.8, 10.3, and 13.7 bar) and for RO (10.3, 13.7, and 17.2) The retentate from each membrane was recycled back to the feed and retreated until the inlet pressure increased to the maximum cut-off pressure for each membrane. After separation, 100 % total suspended solids, total dissolved solids, color removal and 94.2 % chemical oxygen demand, and 86 % AOX removal was observed. This study suggests the potential application of the combination of membrane separation with activated sludge process for recycling water in the paper industry.

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Literatur
Zurück zum Zitat Abbasi GY, Abbassi BE (2004) Environmental assessment for paper and cardboard industry in Jordan: a cleaner production concept. J Clean Prod 12(4):321–326CrossRef Abbasi GY, Abbassi BE (2004) Environmental assessment for paper and cardboard industry in Jordan: a cleaner production concept. J Clean Prod 12(4):321–326CrossRef
Zurück zum Zitat Abou-Elela SI, Nasr FA, Ibrahim HS, Badr NM, Askalany ARM (2008) Pollution prevention pays off in a board paper mill. J Clean Prod 16(3):330–334CrossRef Abou-Elela SI, Nasr FA, Ibrahim HS, Badr NM, Askalany ARM (2008) Pollution prevention pays off in a board paper mill. J Clean Prod 16(3):330–334CrossRef
Zurück zum Zitat APHA and AWWA aW (2005) Standard methods for the examination of water and wastewater, 21st edn. American Public Health Association, Washington, D.C APHA and AWWA aW (2005) Standard methods for the examination of water and wastewater, 21st edn. American Public Health Association, Washington, D.C
Zurück zum Zitat Ataberk S, Gokcay CF (1997) Removal of chlorinated organics from pulping effluents by activated sludge process. Fersenius Environ Bull 6:147–153 Ataberk S, Gokcay CF (1997) Removal of chlorinated organics from pulping effluents by activated sludge process. Fersenius Environ Bull 6:147–153
Zurück zum Zitat Azbar N (2004) Upgrading an existing treatment system to adopt cleaner production principals. J Clean Prod 12(7):789–795CrossRef Azbar N (2004) Upgrading an existing treatment system to adopt cleaner production principals. J Clean Prod 12(7):789–795CrossRef
Zurück zum Zitat Bajpai P (2012) Biological treatment of pulp and paper mill effluents. In: Biotechnology for pulp and paper processing. Springer, New York, USA, pp 211–261 Bajpai P (2012) Biological treatment of pulp and paper mill effluents. In: Biotechnology for pulp and paper processing. Springer, New York, USA, pp 211–261
Zurück zum Zitat Beril Gönder Z, Arayici S, Barlas H (2011) Advanced treatment of pulp and paper mill wastewater by nanofiltration process: effects of operating conditions on membrane fouling. Sep Purif Technol 76(3):292–302CrossRef Beril Gönder Z, Arayici S, Barlas H (2011) Advanced treatment of pulp and paper mill wastewater by nanofiltration process: effects of operating conditions on membrane fouling. Sep Purif Technol 76(3):292–302CrossRef
Zurück zum Zitat Blöcher C, Noronha M, Fünfrocken L, Dorda J, Mavrov V, Janke HD, Chmiel H (2002) Recycling of spent process water in the food industry by an integrated process of biological treatment and membrane separation. Desalination 144(1–3):143–150CrossRef Blöcher C, Noronha M, Fünfrocken L, Dorda J, Mavrov V, Janke HD, Chmiel H (2002) Recycling of spent process water in the food industry by an integrated process of biological treatment and membrane separation. Desalination 144(1–3):143–150CrossRef
Zurück zum Zitat Bulow C, Pingen G, Hamm U (2003) Complete water system closure. In: Pulp and Paper International, 12:14–17 Bulow C, Pingen G, Hamm U (2003) Complete water system closure. In: Pulp and Paper International, 12:14–17
Zurück zum Zitat Buyukkamaci N, Koken E (2010) Economic evaluation of alternative wastewater treatment plant options for pulp and paper industry. Sci Total Environ 408(24):6070–6078CrossRef Buyukkamaci N, Koken E (2010) Economic evaluation of alternative wastewater treatment plant options for pulp and paper industry. Sci Total Environ 408(24):6070–6078CrossRef
Zurück zum Zitat Choi J-H, Dockko S, Fukushi K, Yamamoto K (2002) A novel application of a submerged nanofiltration membrane bioreactor (NF MBR) for wastewater treatment. Desalination 146(1–3):413–420CrossRef Choi J-H, Dockko S, Fukushi K, Yamamoto K (2002) A novel application of a submerged nanofiltration membrane bioreactor (NF MBR) for wastewater treatment. Desalination 146(1–3):413–420CrossRef
Zurück zum Zitat Galil NI, Levinsky Y (2007) Sustainable reclamation and reuse of industrial wastewater including membrane bioreactor technologies: case studies. Desalination 202(1–3):411–417CrossRef Galil NI, Levinsky Y (2007) Sustainable reclamation and reuse of industrial wastewater including membrane bioreactor technologies: case studies. Desalination 202(1–3):411–417CrossRef
Zurück zum Zitat Gergov M, Priha M, Talka E, Valttila O, Kangas A, Kukkonen K (1988) Chlorinated organic compounds in effluent treatment at kraft mills. Tappi J 71(12):175–184 Gergov M, Priha M, Talka E, Valttila O, Kangas A, Kukkonen K (1988) Chlorinated organic compounds in effluent treatment at kraft mills. Tappi J 71(12):175–184
Zurück zum Zitat Hamm U, Schabel S (2007) Effluent-free papermaking: industrial experiences and latest developments in the German paper industry. Water Sci Technol 55(6):205–211CrossRef Hamm U, Schabel S (2007) Effluent-free papermaking: industrial experiences and latest developments in the German paper industry. Water Sci Technol 55(6):205–211CrossRef
Zurück zum Zitat Hernández-Sancho F, Sala-Garrido R (2009) Technical efficiency and cost analysis in wastewater treatment processes: a DEA approach. Desalination 249(1):230–234CrossRef Hernández-Sancho F, Sala-Garrido R (2009) Technical efficiency and cost analysis in wastewater treatment processes: a DEA approach. Desalination 249(1):230–234CrossRef
Zurück zum Zitat Karthik M, Dhodapkar R, Manekar P, Aswale P, Nandy T (2011) Closing water loop in a paper mill section for water conservation and reuse. Desalination 281:172–178CrossRef Karthik M, Dhodapkar R, Manekar P, Aswale P, Nandy T (2011) Closing water loop in a paper mill section for water conservation and reuse. Desalination 281:172–178CrossRef
Zurück zum Zitat Khansorthong S, Hunsom M (2009) Remediation of wastewater from pulp and paper mill industry by the electrochemical technique. Chem Eng J 151(1–3):228–234CrossRef Khansorthong S, Hunsom M (2009) Remediation of wastewater from pulp and paper mill industry by the electrochemical technique. Chem Eng J 151(1–3):228–234CrossRef
Zurück zum Zitat Liu G, Liu Y, Ni J, Shi H, Qian Y (2004) Treatability of kraft spent liquor by microfiltration and ultrafiltration. Desalination 160(2):131–141CrossRef Liu G, Liu Y, Ni J, Shi H, Qian Y (2004) Treatability of kraft spent liquor by microfiltration and ultrafiltration. Desalination 160(2):131–141CrossRef
Zurück zum Zitat Mänttäri M, Nuortila-Jokinen J, Nyström M (1997) Influence of filtration conditions on the performance of NF membranes in the filtration of paper mill total effluent. J Membr Sci 137(1–2):187–199CrossRef Mänttäri M, Nuortila-Jokinen J, Nyström M (1997) Influence of filtration conditions on the performance of NF membranes in the filtration of paper mill total effluent. J Membr Sci 137(1–2):187–199CrossRef
Zurück zum Zitat Mänttäri M, Viitikko K, Nyström M (2006) Nanofiltration of biologically treated effluents from the pulp and paper industry. J Membr Sci 272(1–2):152–160CrossRef Mänttäri M, Viitikko K, Nyström M (2006) Nanofiltration of biologically treated effluents from the pulp and paper industry. J Membr Sci 272(1–2):152–160CrossRef
Zurück zum Zitat Mobius CH, Helble A (2003) Combined ozonation and biofilm treatment for reuse of paper mill wastewaters. In: Third International Conference on Oxidation Technologies for Water and Wastewater Treatment, Goslar, Special Topic: AOP’s for Recycling and Reuse,. pp 276–280 Mobius CH, Helble A (2003) Combined ozonation and biofilm treatment for reuse of paper mill wastewaters. In: Third International Conference on Oxidation Technologies for Water and Wastewater Treatment, Goslar, Special Topic: AOP’s for Recycling and Reuse,. pp 276–280
Zurück zum Zitat Nandy T, Kaul SN, Shastry S (2002) Upgrading a paper industry effluent treatment plant for capacity expansion with recourse to recycling effluent. Resour Conserv Recycl 34(3):209–228CrossRef Nandy T, Kaul SN, Shastry S (2002) Upgrading a paper industry effluent treatment plant for capacity expansion with recourse to recycling effluent. Resour Conserv Recycl 34(3):209–228CrossRef
Zurück zum Zitat Nassar MM (2003) Studies on internal and external water treatment at a paper and cardboard factory. J Chem Technol Biotechnol 78(5):572–576CrossRef Nassar MM (2003) Studies on internal and external water treatment at a paper and cardboard factory. J Chem Technol Biotechnol 78(5):572–576CrossRef
Zurück zum Zitat Negaresh E, Antony A, Bassandeh M, Richardson DE, Leslie G (2012) Selective separation of contaminants from paper mill effluent using nanofiltration. Chem Eng Res Des 90(4):576–583CrossRef Negaresh E, Antony A, Bassandeh M, Richardson DE, Leslie G (2012) Selective separation of contaminants from paper mill effluent using nanofiltration. Chem Eng Res Des 90(4):576–583CrossRef
Zurück zum Zitat Parthasarathy G, Krishnagopalan G (1999) Effluent reduction and control of non-process elements towards a cleaner Kraft pulp mill. Clean Prod Process 1(4):264–277 Parthasarathy G, Krishnagopalan G (1999) Effluent reduction and control of non-process elements towards a cleaner Kraft pulp mill. Clean Prod Process 1(4):264–277
Zurück zum Zitat Patoczka J (2006) TDS and sludge generation impacts from use of chemicals in wastewater treatment. In: WEFTEC®.06. Water Environment Foundation, NJ, 5209–5214 Patoczka J (2006) TDS and sludge generation impacts from use of chemicals in wastewater treatment. In: WEFTEC®.06. Water Environment Foundation, NJ, 5209–5214
Zurück zum Zitat Paul D, Sikdar SK (1998) Clean production with membrane technology. Clean Prod Process 1(1):39–48 Paul D, Sikdar SK (1998) Clean production with membrane technology. Clean Prod Process 1(1):39–48
Zurück zum Zitat Pizzichini M, Russo C, Meo CD (2005) Purification of pulp and paper wastewater, with membrane technology, for water reuse in a closed loop. Desalination 178(1–3):351–359CrossRef Pizzichini M, Russo C, Meo CD (2005) Purification of pulp and paper wastewater, with membrane technology, for water reuse in a closed loop. Desalination 178(1–3):351–359CrossRef
Zurück zum Zitat Raj A, Reddy MMK, Chandra R (2007) Decolourisation and treatment of pulp and paper mill effluent by lignin-degrading Bacillus sp. J Chem Technol Biotechnol 82(4):399–406CrossRef Raj A, Reddy MMK, Chandra R (2007) Decolourisation and treatment of pulp and paper mill effluent by lignin-degrading Bacillus sp. J Chem Technol Biotechnol 82(4):399–406CrossRef
Zurück zum Zitat Sattler C, de Oliveira L, Tzschirner M, Machado AEH (2004) Solar photocatalytic water detoxification of paper mill effluents. Energy 29(5–6):835–843CrossRef Sattler C, de Oliveira L, Tzschirner M, Machado AEH (2004) Solar photocatalytic water detoxification of paper mill effluents. Energy 29(5–6):835–843CrossRef
Zurück zum Zitat Shukla SK, Kumar V, Bansal MC (2010) Treatment of combined bleaching effluent by membrane filtration technology for system closure in paper industry. Desalin Water Treat 13(1–3):464–470CrossRef Shukla SK, Kumar V, Bansal MC (2010) Treatment of combined bleaching effluent by membrane filtration technology for system closure in paper industry. Desalin Water Treat 13(1–3):464–470CrossRef
Zurück zum Zitat Shukla S, Kumar V, Kim T, Bansal MC (2013a) Membrane filtration of chlorination and extraction stage bleach plant effluent in Indian paper Industry. Clean Technol Environ Policy 15(2):235–243CrossRef Shukla S, Kumar V, Kim T, Bansal MC (2013a) Membrane filtration of chlorination and extraction stage bleach plant effluent in Indian paper Industry. Clean Technol Environ Policy 15(2):235–243CrossRef
Zurück zum Zitat Shukla SK, Kumar V, Chakradhar B, Kim T (2013b) Recycling of regenerated wastewater in the process using water cascade analysis in pulp and paper mills. In: Recycling: Technological Systems, Management Practices and Environmental Impact, 209–224 Shukla SK, Kumar V, Chakradhar B, Kim T (2013b) Recycling of regenerated wastewater in the process using water cascade analysis in pulp and paper mills. In: Recycling: Technological Systems, Management Practices and Environmental Impact, 209–224
Zurück zum Zitat Shukla SK, Kumar V, Chakradhar B, Kim T, Bansal MC (2013c) Designing plant scale process integration for water management in an Indian paper mill. J Environ Manag 128:602–614CrossRef Shukla SK, Kumar V, Chakradhar B, Kim T, Bansal MC (2013c) Designing plant scale process integration for water management in an Indian paper mill. J Environ Manag 128:602–614CrossRef
Zurück zum Zitat Sumathi S, Hung Y-T (2006) Treatment of pulp and paper mill wastes. In: Wang LK, Hung Y-T, Lo HH, Yapijakis C (eds) Waste treatment in the process industries. Taylor & Francis Group, Boca Raton, FL, USA, pp 453–497 Sumathi S, Hung Y-T (2006) Treatment of pulp and paper mill wastes. In: Wang LK, Hung Y-T, Lo HH, Yapijakis C (eds) Waste treatment in the process industries. Taylor & Francis Group, Boca Raton, FL, USA, pp 453–497
Zurück zum Zitat Tansel B, Bao WY, Tansel IN (2000) Characterization of fouling kinetics in ultrafiltration systems by resistances in series model. Desalination 129(1):7–14CrossRef Tansel B, Bao WY, Tansel IN (2000) Characterization of fouling kinetics in ultrafiltration systems by resistances in series model. Desalination 129(1):7–14CrossRef
Zurück zum Zitat Zhang Y, Ma C, Ye F, Kong Y, Li H (2009) The treatment of wastewater of paper mill with integrated membrane process. Desalination 236(1–3):349–356CrossRef Zhang Y, Ma C, Ye F, Kong Y, Li H (2009) The treatment of wastewater of paper mill with integrated membrane process. Desalination 236(1–3):349–356CrossRef
Metadaten
Titel
Combining activated sludge process with membrane separation to obtain recyclable quality water from paper mill effluent
verfasst von
Sudheer Kumar Shukla
Vivek Kumar
Tuan Van Doan
Keunje Yoo
Younkyung Kim
Joonhong Park
Publikationsdatum
01.03.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 3/2015
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-014-0836-2

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