Abstract Background Caldicellulosiruptor saccharolyticus has attracted increased interest as an industrial hydrogen (H2) producer. The aim of the present study was to develop a kinetic growth model for this extreme thermophile. The model is based on Monod kinetics supplemented with the inhibitory effects of H2 and osmotic pressure, as well as the liquid-to-gas mass transfer of H2. Results Mathematical expressions were developed to enable the simulation of microbial growth, substrate consumption and product formation. The model parameters were determined by fitting them to experimental data. The derived model corresponded well with experimental data from batch fermentations in which the stripping rates and substrate concentrations were varie...
A kinetic model of fermentative hydrogen (H2) production was developed for the hyperthermophilic mar...
In this paper, the inhibitory effects of added hydrogen in reactor headspace on fermentative hydroge...
The world faces major climate challenges and extensive efforts need to be taken to combat this issue...
Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for grow...
Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for grow...
Abstract Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable...
Background: Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for gro...
International audienceBackground: Thermotoga maritima is a hyperthermophilic bacterium known to prod...
Background: Thermotoga maritima is a hyperthermophilic bacterium known to produce hydrogen from a la...
Background: Thermotoga maritima is a hyperthermophilic bacterium known to produce hydrogen from a la...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
Abstract Background Caldicellulosiruptor saccharolyticus has the ability to produce hydrogen (H2) at...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
A kinetic model of fermentative hydrogen (H-2) production was developed for the hyper-thermophilic m...
A kinetic model of fermentative hydrogen (H2) production was developed for the hyperthermophilic mar...
A kinetic model of fermentative hydrogen (H2) production was developed for the hyperthermophilic mar...
In this paper, the inhibitory effects of added hydrogen in reactor headspace on fermentative hydroge...
The world faces major climate challenges and extensive efforts need to be taken to combat this issue...
Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for grow...
Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for grow...
Abstract Background Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable...
Background: Caldicellulosiruptor saccharolyticus is an attractive hydrogen producer suitable for gro...
International audienceBackground: Thermotoga maritima is a hyperthermophilic bacterium known to prod...
Background: Thermotoga maritima is a hyperthermophilic bacterium known to produce hydrogen from a la...
Background: Thermotoga maritima is a hyperthermophilic bacterium known to produce hydrogen from a la...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
Abstract Background Caldicellulosiruptor saccharolyticus has the ability to produce hydrogen (H2) at...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
A kinetic model of fermentative hydrogen (H-2) production was developed for the hyper-thermophilic m...
A kinetic model of fermentative hydrogen (H2) production was developed for the hyperthermophilic mar...
A kinetic model of fermentative hydrogen (H2) production was developed for the hyperthermophilic mar...
In this paper, the inhibitory effects of added hydrogen in reactor headspace on fermentative hydroge...
The world faces major climate challenges and extensive efforts need to be taken to combat this issue...