Biofules are an important option for humanity to move away from its dependence on fossil fuels. Transitioning from food crops to lignocellulosic alternatives for the production of biofuels is equally important. Most commonly, biofuels are produced using a crop such as corn or soybeans to feed sugars to the yeast, Saccharomyces cerevisiae for the fermentation of ethanol. Lignocellulosic biofuel production would eliminate the need for food crops and transition to biomass such as switchgrass, poplar, or corn stover. Currently, lignocellulosic biofuel production is limited primarily because of the cost of converting the biomass to fermentable sugars than can then be metabolized by yeast. To overcome this barrier, a process must be employed that...
Abstract Background Clostridium thermocellum has been the subject of multiple metabolic engineering ...
Due to its low environmental impact and high maturity of the fuel ethanol market, lignocellulosic et...
Abstract Background ...
Biofules are an important option for humanity to move away from its dependence on fossil fuels. Tran...
There is an urgent need to replace petroleum-based transportation fuels with renewable and sustainab...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
<div><p>Large-scale production of lignocellulosic biofuel is a potential solution to sustainably mee...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Biomass recalcitrance—resistance to degradation—currently limits the use of lignocellulose for biofu...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Background Microorganisms possess diverse metabolic capabilities that can potentially be leveraged f...
Background: Clostridium thermocellum is a gram-positive thermophile that can directly convert lignoc...
The development of a secure and sustainable energy economy is likely to require the production of fu...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Abstract Background Clostridium thermocellum has been the subject of multiple metabolic engineering ...
Due to its low environmental impact and high maturity of the fuel ethanol market, lignocellulosic et...
Abstract Background ...
Biofules are an important option for humanity to move away from its dependence on fossil fuels. Tran...
There is an urgent need to replace petroleum-based transportation fuels with renewable and sustainab...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
<div><p>Large-scale production of lignocellulosic biofuel is a potential solution to sustainably mee...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Biomass recalcitrance—resistance to degradation—currently limits the use of lignocellulose for biofu...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Background Microorganisms possess diverse metabolic capabilities that can potentially be leveraged f...
Background: Clostridium thermocellum is a gram-positive thermophile that can directly convert lignoc...
The development of a secure and sustainable energy economy is likely to require the production of fu...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Abstract Background Clostridium thermocellum has been the subject of multiple metabolic engineering ...
Due to its low environmental impact and high maturity of the fuel ethanol market, lignocellulosic et...
Abstract Background ...