INVESTIGADORES
ALDABE Sara Alfonsina
congresos y reuniones científicas
Título:
ADSORPTION AND DIFFUSION IN SILICA GELS. EFFECT OF SYNTHESIS PARAMETERS AND DIFFUSING MOLECULES
Autor/es:
ANA MERCEDES PERULLINI; MATIAS JOBBAGY; SARA ALDABE BILMES
Lugar:
Porto de Galinhas- Pernambuco- Brazil
Reunión:
Congreso; 15th International Sol-Gel Conference; 2009
Institución organizadora:
International Sol Gel Society
Resumen:
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he stability of silica hydrogels and the possibility of tuning the
synthesis within the range of biocompatibility provide optimal conditions for
designing Biologically Active Materials (BAMs). Mechanical stability is an
important requirement especially when BAMs are conceived for long term
operation, as in the case of encapsulated vegetal cells[1].
Transport of nutrients and metabolites are of vital importance for survival of
encapsulated biological entities, as well as for extraction of valuable
products from metabolic processes.
For measurement of transport properties on hydrogels it is necessary to
know, at least, the texture and adsorption of diffusing species at the pores
walls. These parameters are not easily measured, and experimental methods give
empirical diffusion parameters expressed in terms of tortuosity.
In this communication we present values for effective diffusion
coefficient (Deff) of small anionic or cationic dyes in hydrogels
prepared from silicate and preformed SiO2 nanoparticles (LUDOX® HS40)
at different pH. Measurements were performed by simple experimental methods
especially designed for this purpose. The diffusion profile of dyes was determined
from processed images taken with a scanner. In all cases the isoelectric point
of silica is below the working pH, thus for cationic dyes it was necessary to
consider adsorption. The corresponding isotherms were obtained by absorptivity of
the solution in equilibrium with the gel.
Our results show that for pH =4.5, Deff of dyes is lower than
at pH > 7, as expected for the smaller average pore diameter
of more polymeric gels resulting when the synthesis is made at lower pHs.