A mathematical growth model for the batch solid-state fermentation process for fungal tannase production was developed and tested experimentally. The unstructured model describes the uptake and growth kinetics of Penicillium glabrum in an impregnated polyurethane foam substrate system. In general, good agreement between the experimental data and model simulations was obtained. Biomass, tannase and spore production are described by logistic kinetics with a time delay between biomass production and tannase and spore formation. Possible induction mechanisms for the latter are proposed. Hydrolysis of tannic acid, the main carbon source in the substrate system, is reasonably well described with Michaelis-Menten kinetics with time-varying enzyme ...
Abstract: In the most cases of the practical fermentation processes with filamentous microorganisms,...
Extra- and intracellular tannase production by Aspergillus niger GH1 has been evaluated using submer...
The aim of this work was to describe growth dynamics, substrate depletion and polygalacturonases pro...
A mathematical growth model for the batch solid-state fermentation process for fungal tannase produc...
Truly continuous solid-state fermentations with operating times of 2-3 weeks were conducted in a pro...
Tannase (tannin acyl hydrolase, E.C.3.1.1.20) is an important hydrolysable enzyme with innumerable a...
Objective: To produce tannase enzyme using Aspergillus foetidus with red gram husk as substrate in b...
Background: A sequential statistical strategy was used to optimize tannase production from Aspergill...
AbstractBackgroundA sequential statistical strategy was used to optimize tannase production from Asp...
One variable at a time procedure was used to evaluate the effect of qualitative variables on the pro...
The production of tannase by Aspergillus niger GH1 in solid-state fermentation (SSF) was evaluated. ...
The production of tannase by Aspergillus sp. GM4 under solid-state fermentation (SSF) was investiga...
A simplified model to describe fungal growth during citric pulp fermentation for phytase production ...
Abstract. A simple model to describe the growth of Aspergillus niger during solid state fermentation...
Production of tannase was performed in packed bed reactor filled with an inert support polyurethane ...
Abstract: In the most cases of the practical fermentation processes with filamentous microorganisms,...
Extra- and intracellular tannase production by Aspergillus niger GH1 has been evaluated using submer...
The aim of this work was to describe growth dynamics, substrate depletion and polygalacturonases pro...
A mathematical growth model for the batch solid-state fermentation process for fungal tannase produc...
Truly continuous solid-state fermentations with operating times of 2-3 weeks were conducted in a pro...
Tannase (tannin acyl hydrolase, E.C.3.1.1.20) is an important hydrolysable enzyme with innumerable a...
Objective: To produce tannase enzyme using Aspergillus foetidus with red gram husk as substrate in b...
Background: A sequential statistical strategy was used to optimize tannase production from Aspergill...
AbstractBackgroundA sequential statistical strategy was used to optimize tannase production from Asp...
One variable at a time procedure was used to evaluate the effect of qualitative variables on the pro...
The production of tannase by Aspergillus niger GH1 in solid-state fermentation (SSF) was evaluated. ...
The production of tannase by Aspergillus sp. GM4 under solid-state fermentation (SSF) was investiga...
A simplified model to describe fungal growth during citric pulp fermentation for phytase production ...
Abstract. A simple model to describe the growth of Aspergillus niger during solid state fermentation...
Production of tannase was performed in packed bed reactor filled with an inert support polyurethane ...
Abstract: In the most cases of the practical fermentation processes with filamentous microorganisms,...
Extra- and intracellular tannase production by Aspergillus niger GH1 has been evaluated using submer...
The aim of this work was to describe growth dynamics, substrate depletion and polygalacturonases pro...