Acetogenic bacteria have gained much attraction in recent years as they can produce different biofuels and biochemicals from H2 plus CO2 or even CO alone, therefore opening a promising alternative route for the production of biofuels from renewable sources compared to existing sugar‐based routes. However, CO metabolism still raises questions concerning the biochemistry and bioenergetics in many acetogens. In this study, we focused on the two acetogenic bacteria Acetobacterium woodii and Thermoanaerobacter kivui which, so far, are the only identified acetogens harbouring a H2‐dependent CO2 reductase and furthermore belong to different classes of ‘Rnf’‐ and ‘Ech‐acetogens’. Both strains catalysed the conversion of CO into the bulk chemical ac...
Ferredoxin-dependent metabolic engineering of electron transfer circuits has been developed to enhan...
Gas fermentation is a promising way to convert CO-rich gases to chemicals. We studied the use of syn...
The future sustainable production of chemicals and fuels from nonpetrochemical resources and reducti...
Acetogenic bacteria are already established as biocatalysts for production of high-value compounds f...
The hydrogen-dependent carbon dioxide reductase is a soluble enzyme complex that directly utilizes h...
Numerous industries discharge substantial amounts of carbon monoxide (CO) into the atmosphere as was...
Acetogens are anaerobic bacteria capable of fixing CO2 or CO to produce acetyl coenzyme A (acetyl-Co...
Background: Molecular hydrogen (H2) is an attractive future energy carrier to replace fossil fuels. ...
The generation of formate from CO2 provides a method for sequestration of this greenhouse gas as wel...
Acetogens have the ability to fixate carbon during fermentation by employing the Wood-Ljungdahl path...
Clostridium thermocellum can ferment cellulosic biomass to formate and other end products, including...
Clostridium autoethanogenum, the bacterial model for biological conversion of waste gases into biofu...
Summary Eubacterium limosum KIST612 is one of the few acetogenic bacteria that has the genes encodin...
Papoutsakis, EleftheriosThe mass production of biofuels and chemicals through microbial fermentation...
<p>Carbon monoxide can act as a substrate for different modes of fermentative anaerobic metabolism. ...
Ferredoxin-dependent metabolic engineering of electron transfer circuits has been developed to enhan...
Gas fermentation is a promising way to convert CO-rich gases to chemicals. We studied the use of syn...
The future sustainable production of chemicals and fuels from nonpetrochemical resources and reducti...
Acetogenic bacteria are already established as biocatalysts for production of high-value compounds f...
The hydrogen-dependent carbon dioxide reductase is a soluble enzyme complex that directly utilizes h...
Numerous industries discharge substantial amounts of carbon monoxide (CO) into the atmosphere as was...
Acetogens are anaerobic bacteria capable of fixing CO2 or CO to produce acetyl coenzyme A (acetyl-Co...
Background: Molecular hydrogen (H2) is an attractive future energy carrier to replace fossil fuels. ...
The generation of formate from CO2 provides a method for sequestration of this greenhouse gas as wel...
Acetogens have the ability to fixate carbon during fermentation by employing the Wood-Ljungdahl path...
Clostridium thermocellum can ferment cellulosic biomass to formate and other end products, including...
Clostridium autoethanogenum, the bacterial model for biological conversion of waste gases into biofu...
Summary Eubacterium limosum KIST612 is one of the few acetogenic bacteria that has the genes encodin...
Papoutsakis, EleftheriosThe mass production of biofuels and chemicals through microbial fermentation...
<p>Carbon monoxide can act as a substrate for different modes of fermentative anaerobic metabolism. ...
Ferredoxin-dependent metabolic engineering of electron transfer circuits has been developed to enhan...
Gas fermentation is a promising way to convert CO-rich gases to chemicals. We studied the use of syn...
The future sustainable production of chemicals and fuels from nonpetrochemical resources and reducti...