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Technical Paper

Preliminary Acclimation Strategies for Successful Startup in Conventional Biofilters

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Pages 959-967 | Published online: 24 Jan 2012

References

  • Delhoménie, M.C.; Heitz, M. Biofiltration of Air: A Review; Crit. Rev. Biotechnol. 2005, 25, 53–72.
  • Chen, L.; Hoff, S.; Cai, L.; Koziel, J.; Zelle, B. Evaluation of Wood Chip-Based Biofilters to Reduce Odor, Hydrogen Sulfide, and Ammonia from Swine Barn Ventilation Air; J. Air & Waste Manage. Assoc. 2009, 59, 520-530; doi: 10.3155/1047–3289.59.5.520.
  • Sattler, M.L.; Garrepalli, D.R.; Nawal, C.S. Carbonyl Sulfide Removal with Compost and Wood Chip Biofilters, and in the Presence of Hydrogen Sulfide; J. Air & Waste Manage. Assoc. 2009, 59, 1458-1467; doi: 10.3155/1047–3289.59.12.1458.
  • Kennes, C. Bioreactors for Waste Gas Treatment; Kluwer Academic: Dordrecht, The Netherlands, 2001; pp 257–260.
  • Civillini, M. Multiple Microbial Activities for Volatile Organic Compounds Reduction by Biofiltration; J. Air & Waste Manage. Assoc. 2006, 56, 922–930.
  • Iranpour, R.; Cox, H.H.J.; Deshusses, M.A.; Schroeder, E.D. Literature Review of Air Pollution Control Biofilters and Biotrickling Filters for Odor and Volatile Organic Compound Removal; Environ. Prog. 2005, 24, 254–267.
  • Barona, A.; Elías, A.; Arias, R.; Acha, E.; Cano, I. Desorption and Biofiltration for the Treatment of Residual Organic Gases Evolved in Soil Decontamination Processes; Chem. Eng. Technol. 2007, 30, 1499–1505.
  • Guieysse, B.; Hort, C.; Platel, V.; Muñoz, R.; Ondarts, M.; Revah, S. Biological Treatment of Indoor Air for VOC Removal: Potential and Challenges; Biotechnol. Adv. 2008, 26, 398–410.
  • Datta, I.; Allen, D.G. Biotechnology for Odour and Air Pollution Control; Springer-Verlag, New York, 2005; pp 125–140.
  • Revah, S.; Morgan-Sagastume, J.M. Biotechnology for Odour and Air Pollution Control; Springer-Verlag, New York, 2005; pp 29–60.
  • Prado, O.J.; Gabriel, D., Lafuente, J. Economical Assessment of the Design, Construction and Operation of Open-Bed Biofilters for Waste Gas Treatment; J. Environ. Manage. 2009, 90, 2513–2523.
  • Elías, A.; Barona, A.; Arreguy, A.; Rios, J.; Aranguiz, I.; Penas, F.J. Evaluation of a Packing Material for Biodegradation of H2S and Product Analysis; Proc. Biochem. 2002, 37, 813–820.
  • Gaudin, F.; Andres, Y.; Le Cloirec, P. Packing Material Formulation for Odorous Emission Biofiltration; Chemosphere 2008, 70, 958–966.
  • Ortiz, I.; Garcia-Peña, I.; Christen, P.; Revah, S. Effects of Inoculum Type, Packing Material and Operating Conditions on Pentane Biofiltration; Chem. Biochem. Eng. 2008, 22, 179–184.
  • Jin, Y.; Guo, L.; Veiga, M.C.; Kennes, C. Optimization of the Treatment of Carbon Monoxide-Polluted Air in Biofilters; Chemosphere 2009, 74, 332–337.
  • Chou, M.S.; Chang, Y.F.; Perng, H.T. Treatment of Propylene Glycol Monomethyl Ether Acetate in Air Streams by a Biofilter Packed with Fern Chips; J. Air & Waste Manage. Assoc. 2008, 58, 1590-1597; doi: 10.3155/1047–3289.58.12.1590.
  • Devinny, J.S.; Ramesh, J. A Phenomenological Review of Biofilter Models; Chem. Eng. J. 2005, 113, 187–196.
  • Elías, A.; Ibarra-Berastegi, G.; Barona, A.; Arias, R. Neural Networks as a Tool for Control and Management of a Biological Reactor for Treating Hydrogen Sulfide; Bioproc. Biosyst. Eng. 2006, 29, 129–136.
  • Dorado, A.D.; Baquerizo, G.; Maestre, J.P.; Gamisans, X.; Gabriel, D.; Lafuente, J. Modeling of a Bacterial and Fungal Biofilter Applied to Toluene Abatement: Kinetic Parameters Estimation and Model Validation; Chem. Eng. J. 2007, 140, 52–61.
  • De Visscher, A.; Li, G.Q. Toluene Removal Biofilter: Optimization and Case Study; Process Saf. Environ. Protect. 2008, 86, 277–282.
  • Goncalves, J.J.; Govind, R. Analysis of Biofilters Using Synthetic Macroporous Foam Media; J. Air & Waste Manage. Assoc. 2009, 59, 834-844; doi: 10.3155/1047–3289.59.7.834.
  • Barona, A.; Elías, A.; Arias, R.; Cano, I.; Gonzalez, R. Effect of Sudden Variations in Operating Conditions on Biofilter Performance; Biochem. Eng. J. 2004, 1, 25–31.
  • Prado, O.; Veiga, M.C.; Kennes, C. Treatment of Gas-Phase Methanol in Conventional Biofilters Packed with Lava Rock; Water Res. 2005, 39, 2385–2393.
  • Gabaldon, C.; Martinez-Soria, V.; Martin, M.; Marzal, P. Penya-Roja, J.M.; Alvarez-Hornos, F.J. Removal of Tex Vapors from Air in a Peat Biofilter. Influence of Inlet Concentration and Inlet Load; J. Chem. Technol. Biotechnol. 2006, 81, 322–328.
  • Borin, S.; Marzorati, M.; Brusetti, L.; Zilli, M.; Cherif, H.; Hassen, A.; Converti, A.; Sorlini, C.; Daffonchio, D. Microbial Succession in a Compost-Packed Biofilter Treating Benzene-Contaminated Air; Biodegradation 2006, 17, 79–89.
  • Avalos Ramirez, A.; Jones, J.P.; Heitz, M. Control of Methanol Vapors in a Biotrickling Filter: Performance Analysis and Experimental Determination of Partition Coefficient; Bioresour. Technol. 2009, 100, 1573–1581.
  • Devinny, J.S.; Deshusses, M.A.; Webster, T.S. Biofiltration for Air Pollution Control; CRC: Boca Raton FL, 1999; pp 1–60.
  • Steel, J.A.; Ozis, F.; Fuhrman, J.A.; Devinny, J.S. Structure of Microbial Communities in Ethanol Biofilters; Chem. Eng. J. 2005, 113, 135–143.
  • Kwon, K.H.; Yeom, S.H. Optimal Microbial Adaptation Routes for the Rapid Degradation of High Concentration of Phenol; Bioproc. Biosyst. Eng. 2009, 32, 435–442.
  • Jones, K.D.; Martinez, A.; Maroo, K.; Deshpande, S.; Boswell, J. Kinetic Evaluation of H2S and NH3 Biofiltration for Two Media Used for Wastewater Lift Station Emissions; J. Air & Waste Manage. Assoc. 2004, 54, 24–35.
  • Jiang, X.; Luo, Y.; Yan, R.; Tay, J.H. Impact of Substrates Acclimation Strategy on Simultaneous Biodegradation of Hydrogen Sulfide and Ammonia; Bioresour. Technol. 2009, 100, 5707–5713.
  • Singh, R.S.; Agnihotri, S.S.; Upadhyayet, S.N. Removal of Toluene Vapor Using Agro-Waste as Biofilter Media; Bioresour. Technol. 2006, 97, 2296–2301.
  • Saravanan. V.; Rajamohan, N. Treatment of Xylene Polluted Air Using Press Mud-Based Biofilter; J. Hazard. Mat. 2009, 162, 981–988.
  • Hwang, J.W.; Lee, C.M.; Lee, H.C.; Pua, H.F. Biofiltration of Waste Gases Containing Both Ethyl Acetate and Toluene Using Different Combinations of Bacterial Cultures; J. Biotechnol. 2003, 105, 83–94.
  • Yeom, S.H.; Kim, S.H.; Yoo, Y.J.; Yoo, I.S. Microbial Adaptation in the Degradation of Phenol by Alcaligenes Xylosoxidans Y234; Korean J. Chem. Eng. 1997, 14, 37–40.
  • Heipieper, H.J. de Bont, J.A.M. Adaptation of Pseudomonas Putida s12 to Ethanol and Toluene at the Level of Fatty Acid Composition of Membranes; Appl. Environ. Microbiol. 1994, 60, 4440–4444.
  • Standard Methods for the Examination of Water and Wastewater; American Public Health Association: Washington, DC, 2005; pp 59–81.
  • Acuña, M.E.; Perez, F.; Auria, R.; Revah, S. Microbial and Kinetic Aspects of a Biofilter for the Removal of Toluene from Waste Waters; Biotechnol. Bioeng. 1999, 63, 175–184.
  • Bordel, S.; Muñoz, R.; Diaz, L.F.; Villaverde, S. New Insights on Toluene Biodegradation by Pseudomonas Putida f1: Fluence of Pollutant Concentration and Excreted Metabolites; Appl. Microbiol. Biotechnol. 2007, 74, 857–866.
  • Kraakman, N.J.R. Robustness of a Full-Scale Biological System Treating Industrial CS2 Emissions; Environ. Prog. 2003, 22, 79–85.
  • Efron, B. Bootstrap Methods: Another Look at the Jackknife; Ann. Stats. 1979, 7, 1–26.
  • Emery, W.J.; Thomson, R.E. Data Analysis Methods in Physical Oceanography; Elsevier: Amsterdam, The Netherlands, 2001; pp 1–130.
  • Wilks, D.S. Statistical Methods in the Atmospheric Sciences; Academic: San Diego, CA, 2006; pp 20–220.
  • Maliyekkal, S.M.; Rene, E.R.; Philip, L.; Swaminathan, T. Performance of BTX Degraders under Substrate Versatility Conditions; J. Hazard. Mater. 2004, 109, 201–211.

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