Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction and exploitation have led to strenuous efforts to identify renewable routes to energy and fuels. One attractive option is to convert glycerol, a by-product of the biodiesel industry, into n-butanol, an industrially important chemical and potential liquid transportation fuel, using Clostridium pasteurianum. Under certain growth conditions this Clostridium species has been shown to predominantly produce n-butanol, together with ethanol and 1, 3-propanediol, when grown on glycerol. Further increases in the yields of n-butanol produced by C. pasteurianum could be accomplished through rational metabolic engineering of the strain. Accordingly, in t...
Biobutanol is a sustainable green biofuel that can substitute for gasoline. Carbon flux has been red...
While a majority of academic studies concerning acetone, butanol, ethanol (ABE)-production by Clostr...
This study reports engineering of a hypertransformable variant of C. pasteurianum for bioconversion ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Butanol, produced via traditional acetone-butanol-ethanol (ABE) fermentation, suffers from low yield...
Clostridium acetobutylicum is the model solventogenic saccharolytic Clostridium spp. representing a ...
Butanol and 1,3-propanediol (1,3-PDO) are simultaneously produced by Clostridium pasteurianum from g...
Clostridium is a genus of Gram-positive, rod shape, spore-forming obligate anaerobe. Recently, Clost...
Clostridium pasteurianum ist hinsichtlich seiner Substratnutzung und seines Produktspektrums von gro...
Clostridium pasteurianum ist hinsichtlich seiner Substratnutzung und seines Produktspektrums von gro...
As a sustainable and environmentally friendly biofuel, biobutanol is a potential substitute for gaso...
While a majority of academic studies concerning acetone, butanol, and ethanol (ABE) production by Cl...
This study reports engineering of a hypertransformable variant of C. pasteurianum for bioconversion ...
Biobutanol is a sustainable green biofuel that can substitute for gasoline. Carbon flux has been red...
While a majority of academic studies concerning acetone, butanol, ethanol (ABE)-production by Clostr...
This study reports engineering of a hypertransformable variant of C. pasteurianum for bioconversion ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Declining fossil fuel reserves, coupled with environmental concerns over their continued extraction ...
Butanol, produced via traditional acetone-butanol-ethanol (ABE) fermentation, suffers from low yield...
Clostridium acetobutylicum is the model solventogenic saccharolytic Clostridium spp. representing a ...
Butanol and 1,3-propanediol (1,3-PDO) are simultaneously produced by Clostridium pasteurianum from g...
Clostridium is a genus of Gram-positive, rod shape, spore-forming obligate anaerobe. Recently, Clost...
Clostridium pasteurianum ist hinsichtlich seiner Substratnutzung und seines Produktspektrums von gro...
Clostridium pasteurianum ist hinsichtlich seiner Substratnutzung und seines Produktspektrums von gro...
As a sustainable and environmentally friendly biofuel, biobutanol is a potential substitute for gaso...
While a majority of academic studies concerning acetone, butanol, and ethanol (ABE) production by Cl...
This study reports engineering of a hypertransformable variant of C. pasteurianum for bioconversion ...
Biobutanol is a sustainable green biofuel that can substitute for gasoline. Carbon flux has been red...
While a majority of academic studies concerning acetone, butanol, ethanol (ABE)-production by Clostr...
This study reports engineering of a hypertransformable variant of C. pasteurianum for bioconversion ...