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Articles

Removal of volatile fatty acid in landfill leachate by the microwave-hydrothermal method

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Pages 4423-4429 | Received 11 Jul 2012, Accepted 24 Apr 2013, Published online: 08 Jun 2013

References

  • S. Top, E. Sekman, S. Hoşver, M.S. Bilgili, Characterization and electrocaogulative treatment of nanofiltration concentrate of a full-scale landfill leachate treatment plant. Desalination 268 (2011) 158–162.
  • S. Renou, J.G. Givaudan, S. Poulain, F. Dirassouyan, P. Moulin, Landfill leachate treatment: Review and opportunity. J. Hazard. Mater. 150 (2008) 468–493.
  • I. Siegert, C. Banks, The effect of volatile fatty acid additions on the anaerobic digestion of cellulose and glucose in batch reactors. Process Biochem. 40 (2005) 3412–3418.
  • L. Borzacconi, I. Lápez, C. Anido, Hydrolysis constant and VFA inhibition in acidogenic phase of MSW anaerobic degradation. Water Sci. Technol. 36 (1997) 479–484.
  • A. Veeken, S. Kalyuzhnyi, H. Scharff, B. Hamelers, Effect of pH and VFA on hydrolysis of organic solid waste. J. Environ. Eng. 126 (2000) 1076–1081.
  • J.A. Menendez, M. Inguanzo, J.J. Pis, Microwave induced pyrolysis of sewage sludge. Water Res. 36 (2002) 3261–3264.
  • L. Lin, S. Yuan, J. Chen, Z. Xu, X. Lu, Removal of ammonia nitrogen in wastewater by microwave radiation. J. Hazard. Mater. 161 (2009) 1063–1068.
  • X. Bi, P. Wang, C. Jiao, H. Cao, Degradation of remazol golden yellow dye wastewater in microwave enhanced ClO2 catalytic oxidation process. J. Hazard. Mater. 168 (2009) 895–900.
  • H.C. Tsai, S.L. Lo, Boron removal and recovery from concentrated wastewater using a microwave hydrothermal method. J. Hazard. Mater. 186 (2011) 1431–1437.
  • A. Shazman, S. Mizrahi, U. Cogan, E. Shimoni, Examining for possible non-thermal effects during heating in a microwave oven. Food Chem. 103 (2007) 444–453.
  • X.F. Wang, Standard Methods for the Examination and Analysis of Water and Wastewater, 4th ed., China National Environmental Protection Office, Beijing, 2002.
  • E.T. Thostenson, T.W. Chou, Microwave processing: Fundamentals and applications. Composites: Part A 30 (1999) 1055–1071.
  • Z.H. Zhang, Y.B. Shan, J. Wang, H.J. Ling, S.L. Zang, W. Gao, Z. Zhao, H.C. Zhang, Investigation on the rapid degradation of congo red catalyzed by activated carbon powder under microwave irradiation. J. Hazard. Mater. 147 (2007) 325–333.
  • E.V. Münch, P.F. Greenfield, Estimating VFA concentrations in prefermenters by measuring pH. Water Res. 32 (8) (1998) 2431–2441.
  • A. Bories, J.M. Guillot, Y. Sire, M. Couderc, S.A. Lemaire, V. Kreim, J.C. Roux, Prevention of volatile fatty acids production and limitation of odours from winery wastewaters by denitrification. Water Res. 41 (2007) 2987–2995.
  • L.S. Cavalcante, V.M. Longo, J.C. Sczancoski, M.A.P. Almeida, A.A. Batista, J.A. Varela, M.O. Orlandi, E. Longo, M.S. Li, Electronic structure, growth mechanism and photoluminescence of CaWO4 crystals. Cryst. Eng. Comm. 14 (2012) 853–868.
  • L. Lin, J. Chen, Z. Xu, S. Yuan, M. Cao, H. Liu, X. Lu, Removal of ammonia nitrogen in wastewater by microwave radiation: A pilot scale study. J. Hazard. Mater. 168 (2009) 862–867.
  • P. Herbert, A.L. Silva, M.J. Joao, L. Santos, A. Alves, Determination of semi-volatile priority pollutants in landfill leachates and sediments using microwave-assisted headspace solid-phase microextraction. Anal. Bioanal. Chem. 386 (2006) 324–331.
  • C.S. Xavier, J.C. Sczancoski, L.S. Cavalcante, C.O. Paiva-Santos, J.A. Varela, E. Longo, M. Siu Li, A new processing method of CaZn2(OH)6·2H2O powders: Photoluminescence and growth mechanism. Solid State Sci. 11 (2009) 2173–2179.
  • A.P. Moura, L.S. Cavalcante, J.C. Sczancoski, D.G. Stroppa, E.C. Paris, A.J. Ramirez, J.A. Varela, E. Longo, Structure and growth mechanism of CuO plates obtained by microwave-hydrothermal without surfactants. Adv. Powder Technol. 21 (2010) 197–202.
  • M.A.P. Almeida, L.S. Cavalcante, M. Siu Li, J.A. Varela, E. Longo, Structural refinement and photoluminescence properties of MnWO4 nanorods obtained by microwave-hydrothermal synthesis. J. Inorg. Organomet. Polym. Mater. 22 (2012) 264–271.
  • K.C. Cheung, L.M. Chu, M.H. Wong, Ammonia stripping as a pretreatment for landfill leachate. Water Air Soil Pollut. 94 (1997) 209–221.
  • K.W. Kim, Y.J. Kim, I.T. Kim, G.I. Park, E.H. Lee, Electrochemical conversion characteristics of ammonia to nitrogen. Water Res. 40 (2006) 1431–1441.
  • P.H. Liao, A. Chen, K.V. Lo, Removal of nitrogen from swine manure wastewaters by ammonia stripping. Bioresour. Technol. 54 (1995) 17–20.
  • M. Porcelli, G. Cacciapuoti, S. Fusco, R. Massa, G. Ambrosio, C. Bertoldo, M.D. Rosa, V. Zappia, Non-thermal effects of microwaves on proteins: Thermophilic enzymes as model system. FEBS Lett. 402 (1997) 102–106.
  • J.H. Ahn, S.G. Shin, S. Hwang, Effect of microwave irradiation on the disintegration and acidogenesis of municipal secondary sludge. Chem. Eng. J. 153 (2009) 145–150.
  • N. Li, P. Wang, Q. Liu, H. Cao, Microwave enhanced chemical reduction process for nitrite-containing wastewater treatment using sulfaminic acid. J. Environ. Sci. 22 (2010) 56–61.
  • M. Saha, C. Eskicioglu, J. Marin, Microwave, ultrasonic and chemo-mechanical pretreatments for enhancing methane potential of pulp mill wastewater treatment sludge. Bioresour. Technol. 102 (2011) 7815–7826.
  • I. Plazl, G. Pipus, T. Koloini, Microwave heating of the continuous flow catalytic reactor in a non-uniform electric field. AlChE J. 43 (1997) 754–760.
  • N. Remya, J.G. Lin, Current status of microwave application in wastewater treatment-A review. Chem. Eng. J. 166 (2011) 797–813.

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