The study involved model evaluation of the fate and utilization of starch by microbial culture acclimated to different growth conditions and feeding regimes. For this purpose, parallel sequencing batch reactors were operated with pulse and continuous feeding of soluble starch at sludge ages of 8 and 2 days. High-rate adsorption was identified as the initial process for starch utilization under all operating conditions. Hydrolysis mechanism acted as the rate limiting mechanism for different substrate removal/storage modes sustained under pulse and continuous feeding at different sludge ages. Together with variable growth kinetics, faster growth conditions also triggered high-rate hydrolysis and relatively slower storage kinetics to ensure the level of substrate supply for faster microbial growth. Model evaluation indicated the presence of particulate sugar adsorbed, especially under continuous feeding. It enabled accurate interpretation of observed particulate sugar values and this way, differentiating glycogen from the adsorbed starch remaining on the biomass. (C) 2013 Elsevier Ltd. All rights reserved.

Model evaluation of starch utilization by acclimated biomass with different culture history under pulse and continuous feeding / A. S., Ciggin; G., Insel; Majone, Mauro; D., Orhon. - In: BIORESOURCE TECHNOLOGY. - ISSN 0960-8524. - ELETTRONICO. - 138:(2013), pp. 163-171. [10.1016/j.biortech.2013.03.154]

Model evaluation of starch utilization by acclimated biomass with different culture history under pulse and continuous feeding

MAJONE, Mauro;
2013

Abstract

The study involved model evaluation of the fate and utilization of starch by microbial culture acclimated to different growth conditions and feeding regimes. For this purpose, parallel sequencing batch reactors were operated with pulse and continuous feeding of soluble starch at sludge ages of 8 and 2 days. High-rate adsorption was identified as the initial process for starch utilization under all operating conditions. Hydrolysis mechanism acted as the rate limiting mechanism for different substrate removal/storage modes sustained under pulse and continuous feeding at different sludge ages. Together with variable growth kinetics, faster growth conditions also triggered high-rate hydrolysis and relatively slower storage kinetics to ensure the level of substrate supply for faster microbial growth. Model evaluation indicated the presence of particulate sugar adsorbed, especially under continuous feeding. It enabled accurate interpretation of observed particulate sugar values and this way, differentiating glycogen from the adsorbed starch remaining on the biomass. (C) 2013 Elsevier Ltd. All rights reserved.
2013
sludge age; process modeling; feeding regime; glycogen storage; starch
01 Pubblicazione su rivista::01a Articolo in rivista
Model evaluation of starch utilization by acclimated biomass with different culture history under pulse and continuous feeding / A. S., Ciggin; G., Insel; Majone, Mauro; D., Orhon. - In: BIORESOURCE TECHNOLOGY. - ISSN 0960-8524. - ELETTRONICO. - 138:(2013), pp. 163-171. [10.1016/j.biortech.2013.03.154]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/672212
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