Surface phenomena and hydrodynamic effects on the deposition of Pseudomonas fluorescens


Autoria(s): Pinheiro, M. M.; Melo, L. F.; Bott, T. R.; Pinheiro, J. D. R. S.; Leitão, L.
Data(s)

01/02/1988

Resumo

Biofilm adhesion to metals (copper, aluminium and brass) was studied at two different velocities and pH values of 7 and 9. Both bacteria and metals showed negative surface charges at those values of pH, which tends to slow down adhesion. Film densities increased with the fluid velocity and were also affected by the pH and by the growth rate of the bacteria. Long duration tests based on heat transfer measurements were run at five different fluid velocities and at pH = 7, showing in general an asymptotic behaviour and a control of deposition by adhesion and growth phenomena.

On a ttudie l’adhesion de films biologiques sur des mttaux (cuivre, aluminium et laiton) h difftrentes vitesses et pour des pH de 7 et 9. Les charges de surface negatives des mttaux et des bacttries, obtenues pour ces valeurs de pH, tendent & ralentir l’adhesion. La densitt des films augmente avec la vitesse du fluide et est modifik par le pH ainsi que par la vitesse de croissance des bacttries. Des tests de longue durk utilisant des mesures de transfert de chaleur ont ttt effectues pour cinq vitesses de fluide difftrentes h un pH de 7, montrant un comportement asymptotique ainsi qu’un contr6le du dtpat par la croissance et l’adhesion; en outre, la deposition est contr61te par l’adhtsion.

Identificador

Pinheiro, M.; Melo, L. F.; Bott, T. R.; Pinheiro, J.; Leitão, L., Surface phenomena and hydrodynamic effects on the deposition of Pseudomonas fluorescens. Canadian Journal of Chemical Engineering, 66(1), 63-67, 1988

0008-4034

http://hdl.handle.net/1822/41764

10.1002/cjce.5450660109

Idioma(s)

eng

Publicador

Canadian Society for Chemical Engineering

Relação

http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1939-019X

Direitos

info:eu-repo/semantics/openAccess

Palavras-Chave #Biofouling #Fouling of metal surfaces #Deposition surface effects #Biofilm adhesion #Density
Tipo

info:eu-repo/semantics/article