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Anal Chem ; 79(15): 5567-73, 2007 Aug 01.
Article in English | MEDLINE | ID: mdl-17585833

ABSTRACT

This paper describes the design, modeling, and experimental characterization of an electrochemical sensor array for on-line monitoring of fermentor conditions in both miniaturized cell assays and in industrial scale fermentations. The viable biomass concentration is determined from impedance spectroscopy. As a miniaturized electrode configuration with high cell constant is applied, the spectral conductivity variation is monitored instead of the permittivity variation. The dissolved oxygen concentration is monitored amperometrically using an ultramicroelectrode array, which is shown to have negligible flow dependence. pH is monitored using an ion-sensitive field effect transistor (ISFET), and a platinum thermistor is included for temperature measurements. All sensors were shown to be sufficiently accurate within the range relevant to yeast fermentations. The sensor array is shown to be very stable and durable and withstands steam-sterilization.


Subject(s)
Biosensing Techniques/methods , Fermentation , Saccharomyces cerevisiae/metabolism , Biomass , Biosensing Techniques/instrumentation , Electrochemistry , Equipment Design , Hydrogen-Ion Concentration , Industrial Microbiology , Microelectrodes , Platinum/chemistry , Saccharomyces cerevisiae/cytology , Sensitivity and Specificity , Temperature , Thermometers , Transistors, Electronic
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