Influence of physico-chemical properties of porous microcarriers on the adhesion of an anaerobic consortium
Author(s) -
M. A. Pereira,
M. M. Alves,
Joana Azeredo,
М. Мота,
Rui Pedro Soares de Oliveira
Publication year - 2000
Publication title -
journal of industrial microbiology and biotechnology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.857
H-Index - 112
eISSN - 1476-5535
pISSN - 1367-5435
DOI - 10.1038/sj.jim.2900799
Subject(s) - adhesion , biomass (ecology) , microcarrier , biofilm , surface roughness , porosity , chemistry , chemical engineering , sepiolite , surface finish , materials science , composite material , biology , bacteria , cell , biochemistry , ecology , organic chemistry , engineering , raw material , genetics
The ability for biomass colonization of four porous mineral microcarriers (sepiolite, clay, pozzolana and foam glass-
PoraverTM), was studied and related to their surface properties. The surface hydrophobicity of the mineral carriers
was a more important factor influencing colonization by the anaerobic consortium than was surface charge. It was
possible to correlate linearly the degree of hydrophobicity with the biomass retention capacity. Although the thermodynamic
theory did not explain adhesion, an increase in cell attachment was directly related to the decrease of the
positive values of the free energy of adhesion. Surface roughness, porosity and the amount of surface Mg²+, were
also determinant factors in bacterial immobilization. However a great biomass accumulation can originate a decrease
in biological activity due to mass transfer limitations
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