A bioreactor was designed to provide high gas mass transfer to reach cell and product titres in the g L-1 level from CO2 for realistic, laboratory scale, engineered autotrophic strain evaluation. The design was based on independent CO2, H-2 and air inputs and the ability to operate at high pressures. The bioreactor configuration and cultivation strategy enabled growth of Cupriavidus necator strains for long periods, to reach over 3 g L-1 dry cell weight. No negative impact of the high pressure was observed on viability of the strains up to more than 4 bar overpressure. The cultivation was then carried out using an engineered isopropanol producing strain; in this case, 3.5 g L-1 isopropanol was obtained from CO2 as the sole carbon source. Th...
The success of bioprocess implementation relies on the ability to achieve high volumetric productivi...
This report describes results toward developing a process to sequester CO{sub 2} centered on the enz...
Clostridium acetobutylicum was metabolically engineered to produce a biofuel consisting of an isopro...
Alleviating our society's dependence on petroleum-based chemicals has been highly emphasized due to ...
Alleviating our society’s dependence on petroleum-based chemicals has been highly emphasized due to ...
Aerobic, hydrogen oxidizing bacteria are capable of efficient, non-phototrophic CO2 assimilation, us...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
© 2019, The Author(s). Culture contamination, end-product toxicity, and energy efficient product re...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
Cupriavidus necator is a microorganism known for its ability to store polyhydroxyalkanoates (PHA), w...
Production of a TGF\u3b2 receptor with high density baculovirus infected Sf-9 cells (7 7106cells ml-...
Cupriavidus necator is a microorganism known for its ability to store polyhydroxyalkanoates (PHA), w...
This research project is a collaboration between the Sinskey laboratory at MIT and the Worden labora...
A major source of CO2 emissions is the flaring of steel mill gas. This work demonstrated the enrichm...
Decelerating global warming is one of the predominant challenges of our time and will require conver...
The success of bioprocess implementation relies on the ability to achieve high volumetric productivi...
This report describes results toward developing a process to sequester CO{sub 2} centered on the enz...
Clostridium acetobutylicum was metabolically engineered to produce a biofuel consisting of an isopro...
Alleviating our society's dependence on petroleum-based chemicals has been highly emphasized due to ...
Alleviating our society’s dependence on petroleum-based chemicals has been highly emphasized due to ...
Aerobic, hydrogen oxidizing bacteria are capable of efficient, non-phototrophic CO2 assimilation, us...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
© 2019, The Author(s). Culture contamination, end-product toxicity, and energy efficient product re...
Cupriavidus necator, a facultative hydrogen-oxidizing bacterium, was grown on carbon dioxide, hydrog...
Cupriavidus necator is a microorganism known for its ability to store polyhydroxyalkanoates (PHA), w...
Production of a TGF\u3b2 receptor with high density baculovirus infected Sf-9 cells (7 7106cells ml-...
Cupriavidus necator is a microorganism known for its ability to store polyhydroxyalkanoates (PHA), w...
This research project is a collaboration between the Sinskey laboratory at MIT and the Worden labora...
A major source of CO2 emissions is the flaring of steel mill gas. This work demonstrated the enrichm...
Decelerating global warming is one of the predominant challenges of our time and will require conver...
The success of bioprocess implementation relies on the ability to achieve high volumetric productivi...
This report describes results toward developing a process to sequester CO{sub 2} centered on the enz...
Clostridium acetobutylicum was metabolically engineered to produce a biofuel consisting of an isopro...