Background: Molecular hydrogen (H2) is an attractive future energy carrier to replace fossil fuels. Biologically and sustainably produced H2 could contribute significantly to the future energy mix. However, biological H2 production methods are faced with multiple barriers including substrate cost, low production rates, and low yields. The C1 compound formate is a promising substrate for biological H2 production, as it can be produced itself from various sources including electrochemical reduction of CO2 or from synthesis gas. Many microbes that can produce H2 from formate have been isolated; however, in most cases H2 production rates cannot compete with other H2 production methods. Results: We established a formate-based H2 production meth...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
The biological conversion of CO2 and H2 into formate offers a sustainable route to a valuable commod...
The urgent need to reduce CO2 emissions has motivated the development of CO2 capture and utilization...
Background: Replacing fossil fuels as energy carrier requires alternatives that combine sustainable ...
Background: Replacing fossil fuels as energy carrier requires alternatives that combine sustainable ...
Background: Ethyl acetate (C4H8O2) and hydrogen (H2) are industrially relevant compounds that prefer...
In times of global climate change and the fear of dwindling resources, we are facing different consi...
In times of global climate change and the fear of dwindling resources, we are facing different consi...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
The biological conversion of CO2 and H2 into formate offers a sustainable route to a valuable commod...
The urgent need to reduce CO2 emissions has motivated the development of CO2 capture and utilization...
Background: Replacing fossil fuels as energy carrier requires alternatives that combine sustainable ...
Background: Replacing fossil fuels as energy carrier requires alternatives that combine sustainable ...
Background: Ethyl acetate (C4H8O2) and hydrogen (H2) are industrially relevant compounds that prefer...
In times of global climate change and the fear of dwindling resources, we are facing different consi...
In times of global climate change and the fear of dwindling resources, we are facing different consi...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...