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Microfluidic study of effects of flow velocity and nutrient concentration on biofilm accumulation and adhesive strength in the flowing and no-flowing microchannels.
Liu, Na; Skauge, Tormod; Landa-Marbán, David; Hovland, Beate; Thorbjørnsen, Bente; Radu, Florin Adrian; Vik, Bartek Florczyk; Baumann, Thomas; Bødtker, Gunhild.
Afiliación
  • Liu N; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway.
  • Skauge T; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway.
  • Landa-Marbán D; Department of Mathematics, Faculty of Mathematics and Natural Sciences, University of Bergen, Allégaten 41, P.O. Box 7803, 5020, Bergen, Norway.
  • Hovland B; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway.
  • Thorbjørnsen B; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway.
  • Radu FA; Department of Mathematics, Faculty of Mathematics and Natural Sciences, University of Bergen, Allégaten 41, P.O. Box 7803, 5020, Bergen, Norway.
  • Vik BF; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway.
  • Baumann T; Institute of Hydrochemistry, Technische Universität München, Marchioninistr. 17, 81377, Munich, Germany.
  • Bødtker G; Centre for Integrated Petroleum Research (CIPR), Uni Research, Nygårdsgaten 112, 5008, Bergen, Norway. gubo@norceresearch.no.
J Ind Microbiol Biotechnol ; 46(6): 855-868, 2019 Jun.
Article en En | MEDLINE | ID: mdl-30874983
ABSTRACT
Biofilm accumulation in porous media can cause pore plugging and change many of the physical properties of porous media. Engineering bioplugging may have significant applications for many industrial processes, while improved knowledge on biofilm accumulation in porous media at porescale in general has broad relevance for a range of industries as well as environmental and water research. The experimental results by means of microscopic imaging over a T-shape microchannel clearly show that increase in fluid velocity could facilitate biofilm growth, but that above a velocity threshold, biofilm detachment and inhibition of biofilm formation due to high shear stress were observed. High nutrient concentration prompts the biofilm growth; however, the generated biofilm displays a weak adhesive strength. This paper provides an overview of biofilm development in a hydrodynamic environment for better prediction and modelling of bioplugging processes associated with porous systems in petroleum industry, hydrogeology and water purification.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Nutrientes / Técnicas Bacteriológicas / Biopelículas / Microfluídica Tipo de estudio: Prognostic_studies Idioma: En Revista: J Ind Microbiol Biotechnol Asunto de la revista: BIOTECNOLOGIA / MICROBIOLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Noruega

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Nutrientes / Técnicas Bacteriológicas / Biopelículas / Microfluídica Tipo de estudio: Prognostic_studies Idioma: En Revista: J Ind Microbiol Biotechnol Asunto de la revista: BIOTECNOLOGIA / MICROBIOLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Noruega