130
Views
3
CrossRef citations to date
0
Altmetric
Membrane

Optimization of Crossflow Microfiltration of Disrupted Arthrobacter luteus Cells

, , , &
Pages 1709-1720 | Received 13 Apr 2014, Accepted 18 Nov 2014, Published online: 29 Jun 2015

REFERENCES

  • Kroner, K. H., Schutte, H., Hustedt, H., Kula, M. (1984) Cross-flow filtration in the downstream processing of enzymes. Process Biochem, 19: 67–74.
  • Reis, R. V., Zydney, A. (2001) Membrane separations in biotechnology. Curr. Opin. Biotechnol, 12(2): 208–211.
  • Aspelund,M. T., Rozeboom, G., Heng, M., Glatz, C. E. (2008) Improving permeate flux and product transmission in the microfiltration of a bacterial cell suspension by flocculation with cationic polyelectrolytes. J. Membr. Sci., 324: 198–208.
  • Belfort, G., Davis, R. H., Zydney, A. L. (1994) A review: The behaviour of suspensions and macromolecular solutions in crossflow microfiltration. J. Membr. Sci., 96: 1–58.
  • Moresi, M., Sebastiani, I. (2009) Ultrafiltration of Food Biopolymers: Adimensionless Approach to Generalised Darcy Model Parameters. Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction: 12th International Conference, May 10–13.
  • Ahmad, A. L., Mariadas, A. (2004) Baffled microfiltration membrane and its fouling control for feed water of desalination. Desalination, 168(0): 223–230.
  • Jokić, A., Zavargo, Z., Šereš, Z., Tekić, M. (2010) The effect of turbulence promoter on cross-flow microfiltration of yeast suspensions: A response surface methodology approach. J Membr Sci, 350(1–2): 269–278.
  • Krstić, D. M., Koris, A. K., Tekić, M. N. (2006) Do static turbulence promoters have potential in cross-flow membrane filtration applications? Desalination, 191(1–3):371–75.
  • Popović, S., Tekić, M. N. (2011) Twisted tapes as turbulence promoters in the microfiltration of milk. J Membr Sci, 384(1–2):97–106.
  • Popović, S., Jovičević, D., Muhadinović, M., Milanović, S., Tekić, M. N. (2013) Intensification of microfiltration using a blade-type turbulence promoter. J Membr Sci, 425–426(0):113–20.
  • Gabrus, E., Szaniawska, D. (2009) Application of backflushing for fouling reduction during microfiltration of yeast suspensions. Desalination, 240(1–3):46–53.
  • Marshall, A. D., Munro, P. A., Tragardh, G. (1993) The effect of protein fouling in microfiltration and ultrafiltration on permeate flux, protein retention and selectivity: A literature review. Desalination, 91: 65–108.
  • Wei, D.S., Hossain, M., Saleh, Z. S. (2007) Separation of polyphenolics and sugar by ultrafiltration: Effects of operating conditions on fouling and diafiltration. Engineering and Technlogy, 34:17–24.
  • Karim, M. N., Graham, H., Han, B., Cibulskas, A. (2008) Flocculation enhanced microfiltration of Escherichia coli lysate. Biochem. Eng. J., 40: 512–519.
  • Agerkvist, I., Eriksson, L., Enfors, S. O. (1990) Selective flocculation with chitosan in Escherichia coli disintegrates: effects of pH and nuclease treatment. Enzyme Microb. Technol, 1(2): 584–590.
  • Mao, R., Wang, Y., Zhao, Y., Gao, B., Dong, M. (2013) Impact of various coagulation technologies on membrane fouling in coagulation/ultrafiltration process. Chem. Eng. J., 225(0):387–93.
  • Brisson, G., Britten, M., Pouliot, Y. (2007) Electrically-enhanced crossflow microfiltration for separation of lactoferrin from whey protein mixtures. J Membr Sci., 297(1–2):206–216.
  • Chuang, C. J., Wu, C. Y., Wu, C. C. (2008) Combination of crossflow and electric field for microfiltration of protein/microbial cell suspensions. Desalination, 233(1–3):295–302.
  • Bordawekar, M., Lipscomb, G. G., Escobar, I. (2009) Use of a temperature sensitive surface gel to reduce fouling. Sep. Sci. Technol., 44(14): 3369–3391.
  • Bailey, S. M., Meagher, M. M. (1997) Crossflow microfiltration of recombinant Escherichia coli lysates after high pressure homogenization. Biotechnol. Bioeng., 57: 304–310.
  • Parnham, C. S., Davis, R. H. (1995) Protein recovery from bacterial cell debris using crossflow microfiltration with backpulsing. Biotechnol. Bioeng., 47: 155–164.
  • Shirato, S., Esumi, S. (1963) Filtration of culture broth of Streptomyces griseus. J.Ferment.Technol., 41: 87–94.
  • Ohmori, K., Glatz, C. E. (1999) Effects of pH and ionic strength on microfiltration of C. glutanicum. J.Membr.Sci., 153: 23–32.
  • Ohmori, K., Glatz C. E. (1999) Corrigendum to Effects of pH and ionic strength on microfiltration of C.glutamicum. J.Membr.Sci., 163: 151–152.
  • Pujar, N. S., Zydney, A. L. (1994) Electrostatic and electrokinetic interactions during protein transport through narrow pore membranes. Ind. Eng. Chem. Res., 33: 2473–2482.
  • Burns, D. B., Zydney, A. L. (1999) Effect of solution pH on protein transport through semipermeable ultrafiltration membranes. Biotech. Bioeng., 64: 27–37.
  • Menon, M. K., Zydney, A. L. (1999) Effect of ion binding of protein transport through ultrafiltration membranes. Biotechnol. Bioeng., 63(3): 298–307.
  • de la Casa, E. J., Guadix, A., Ibáñez, R., Guadix, E. M. (2007) Influence of pH and salt concentration on the cross-flow microfiltration of BSA through a ceramic membrane. Biochem. Eng. J., 33(2):110–115.
  • Mazeika, D., Stupak, R., Liesiene, J., Valancius, Z. (2011) Effect of disruption methods on tangential flow microfiltration of Nocardia corallina cells. Curr. Opin. Biotechnol., 22 ( Supplement 1): S61.
  • Mažeika, D., Stupak, R., Liesienė, J., Valančius, Z. (2012) Tangential flow microfiltration of Thermus aquaticus YT-1 lysate. Chemical technology, 59(1): 54–60.
  • Tadros, T. F. (2005) Applied surfactants: principles and applications; Wiley-VCH. 634 p.
  • Gilby, A. R., Few, A. V. (1960) Lysis of protoplasts of Micrococcus lysodeikticus by ionic detergents. J.gen.Microbiol., 23: 19–26.
  • Dubois, M., Gilles, K. A., Hamilton, J. K., Rebers, P. A., Smith, F. (1956) Colorimetric method for determination of sugars and related substances. Anal. Chem., 28(3): 350–356.
  • Spirin, A. S. (1958) Spectrophotometric analysis of total nucleic acids. Biochemistry (Moscow), 23(5): 656–662.
  • Jones, M. N. (1999) Invited review: Surfactants in membrane solubilisation. Int. J. Pharm., 177: 137–159.
  • Clark, E. D. B. (1998) Refolding of recombinant proteins. Curr. Opin. Biotechnol., 9(2): 157–163.
  • Rozema, D., Gellman, S. H. (1996) Artificial chaperone-assisted refolding of carbonic anhydras B. J. Biol. Chem., 271(7): 3478–3487.
  • Gohon, Y., Popot, J. (2003) Membrane protein-surfactant complexes. Curr. Opin. Colloid Interface Sci., 8: 15–22.
  • Beck A., Li-Blatter, X., Seeling, A., Seeling, J. (2010) On the interaction of ionic detergents with lipid membranes: Thermodynamic comparison of n-alkyl-+N(CH3)3 and n-alkyl-SO4-. J. Phys. Chem. B., 114: 15862–15871.
  • Kim, J. S., Akeprathumchai, S., Wickramasinghe, S. R. (2001) Flocculation to enhance microfiltration. J.Membr.Sci., 182: 161–172.
  • Akeprathumchai, S., Han, B., Wickramasinghe, S. R., Carlson, J. O., Czermak, P., Preis, K. (2004) Murine leukemia virus clearance by flocculation and microfiltration. Biotechnol. Bioeng., 88: 880–889.
  • Wickramasinghe, S. R., Wu, Y. L., Han, B. B. (2002) Enhanced microfiltration of yeast by flocculation. Desalination, 147: 25–30.
  • Mazeika, D., Streckis, S., Radzevicius, K., Liesiene, J., Valancius, Z. (2015) Flocculation of B. Amyloliquefaciens H with cationized starch and aminated hydroxyethylcellulose. J. Dispersion Sci. Technol., 36(1): 146–153.
  • Burgess, R. R. (2009) Chapter 20: Protein Precipitation Techniques. Methods in Enzymology. Guide to Protein Purification, 2nd ed.; Elsevier: Amsterdam; Vol. 463, pp 331–342.
  • Foley, G. (2006) A review factors affecting filter cake properties in dead-end microfiltration of microbial suspensions. J.Membr. Sci., 274: 38–46.
  • Parnham, C. S., Davis, R. H. (1995) Protein recovery from cell debris using rotary and tangential crossflow microfiltration. Biotech. Bioeng., 47: 155–164.
  • Forman, S. M., DeBernardez, E. R., Feldberg, R. S., Swartz, R. W. (1990) Crossflow filtration for the separation of inclusion bodies from soluble proteins in recombinant Escherichia coli cell lysate. J. Membr. Sci., 48: 263–279.
  • Mehta, A., Zydney, A. L. (1996) Effect of membrane charge on flow and protein transport during ultrafiltration. Biotechnol. Prog., 22: 484–492.
  • Johnson, W. P., Martin, M. J., Gross, M. J., Logan, B. E. (1996) Facilitation of bacterial transport through porous media by changes in solution and surface properties. Colloids Surf., 107: 263–271.
  • Sharma, M. M., Chang, Y. I., Yen, T. F. (1985) Reversible and irreversible surface charge modification of bacteria for facilitating transport through porous media. Colloids Surf., 16: 193–206.
  • Shang, J., Cai, Z., Cong, W., Su, Z., Ouyang, F. (2007) Mechanisms of protein fouling in microfiltration. II. Adsorption and deposition of proteins on microfiltration membranes. Sep. Sci. Technol., 37(13): 3039–3051.
  • Rayess, Y. E., Albasi, C., Bacchin, P., Taillandier, P., Mietton-Peuchot, M., Devatine, A. (2012) Analysis of membrane fouling during cross-flow microfiltration of wine. Innovative Food Sci. Emerg., 16: 398–408.
  • Blanco, A., Negro, C., Fuente, E., Tijero, J. (2005) Effect of shearing forces and flocculant overdose on filler flocculation mechanisms and floc properties. Ind Eng Chem Res., 44(24):9105–9112.
  • Cheng, Y-S., Zheng, Y., Labavitch, J. M., VanderGheynst, J. S. (2011) The impact of cell wall carbohydrate composition on the chitosan flocculation of Chlorella. Process Biochem., 46(10):1927–1933.
  • Krapf, M-EM, Lartiges, B. S., Merlin, C., Francius, G., Ghanbaja, J., Duval, J. F. L. (2012) Polyethyleneimine-mediated flocculation of Shewanella oneidensis MR-1: Impacts of cell surface appendage and polymer concentration. Water Res., 46(6):1838–46.
  • Nataraj, S., Schomäcker, R., Kraume, M., Mishra, I. M., Drews, A. (2008) Analyses of polysaccharide fouling mechanisms during crossflow membrane filtration. J Membr Sci., 308(1–2):152–61.
  • Ricco, D., M. C., Adam, E., Naddeo, V., Jefferson, B., Belgiorno, V. (2011) Crossflow membrane filtration: Polysaccharides fouling mechanisms. Proceedings of the 12th International Conference on Environmental Science and Technology. Rhodes, Greece, 8-10 September. A1562-1569.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.