Stripping gas is generally used to improve hydrogen yields in fermentations. Since CO2 is relatively easy to separate from hydrogen it could be an interesting stripping gas. However, a higher partial CO2 pressure is accompanied with an increased CO2 uptake in the liquid, where it hydrolyses and induces an increased requirement of NaOH to maintain the pH. This enhances the osmotic pressure in the culture by 30%, which inhibited the growth of Caldicellulosiruptor saccharolyticus. indications for this conclusion are: i) inhibition could almost completely be circumvented by reducing the bicarbonate through decreasing the pH (from 6.5 to 5.5), ii) Growth rates were reduced by 60 +/- 10% at an osmotic pressure of 0.218 +/- 0.005 osm/kg H2O indepe...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
This research reports on investigating Citrobacter amalonaticus Y19, a chemoheterotrophic facultativ...
Stripping gas is generally used to improve hydrogen yields in fermentations. Since CO2 is relatively...
Stripping gas is generally used to improve hydrogen yields in fermentations. Since CO2 is relatively...
Carbon dioxide could replace nitrogen gas as stripping gas for the production of H2 by the extreme t...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
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...
In this paper, the inhibitory effects of added hydrogen in reactor headspace on fermentative hydroge...
A high substrate conversion efficiency is a prerequisite for an economically feasible biohydrogen pr...
Increased hydrogen (H2) levels are known to inhibit H2 formation in Caldicellulosiruptor saccharolyt...
Increased hydrogen (H2) levels are known to inhibit H2 formation in Caldicellulosiruptor saccharolyt...
Abstract Background Caldicellulosiruptor saccharolyticus has attracted increased interest as an indu...
The water-gas shift reaction, in which carbon monoxide is oxidized to carbon dioxide while si-multan...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
This research reports on investigating Citrobacter amalonaticus Y19, a chemoheterotrophic facultativ...
Stripping gas is generally used to improve hydrogen yields in fermentations. Since CO2 is relatively...
Stripping gas is generally used to improve hydrogen yields in fermentations. Since CO2 is relatively...
Carbon dioxide could replace nitrogen gas as stripping gas for the production of H2 by the extreme t...
Substrate and product inhibition of hydrogen production during sucrose fermentation by the extremely...
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...
In this paper, the inhibitory effects of added hydrogen in reactor headspace on fermentative hydroge...
A high substrate conversion efficiency is a prerequisite for an economically feasible biohydrogen pr...
Increased hydrogen (H2) levels are known to inhibit H2 formation in Caldicellulosiruptor saccharolyt...
Increased hydrogen (H2) levels are known to inhibit H2 formation in Caldicellulosiruptor saccharolyt...
Abstract Background Caldicellulosiruptor saccharolyticus has attracted increased interest as an indu...
The water-gas shift reaction, in which carbon monoxide is oxidized to carbon dioxide while si-multan...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
This research reports on investigating Citrobacter amalonaticus Y19, a chemoheterotrophic facultativ...