Cellulose is the most abundant renewable natural biological resource, and the production of biobased products and bioenergy from less costly renewable lignocellulosic materials is important for the sustainable development of human beings. A reduction in cellulase production cost, an improvement in cellulase performance, and an increase in sugar yields are all vital to reduce the processing costs of biorefineries. Improvements in specific cellulase activities for non-complexed cellulase mixtures can be implemented through cellulase engineering based on rational design or directed evolution for each cellulase component enzyme, as well as on the reconstitution of cellulase components. Here, we review quantitative cellulase activity assays usin...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
Abstract: Commercial cellulase preparations are poten-tially effective for processing biomass feedst...
Predicting the hydrolytic potential of a “cellulase enzyme cocktail” on lignocellulosic substrates i...
Cellulases are enzymes that are attracting worldwide attention because of their ability to degrade c...
Cellulases are enzymes that are attracting worldwide attention because of their ability to degrade c...
There is tremendous social and political interest in the production of sustainable and carbon neutra...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
Abstract In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocell...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
This research project was designed to play a vital role in the development of low cost sugars from c...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
Predicting the hydrolytic potential of a “cellulase enzyme cocktail” on lignocellulosic substrates i...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
Abstract: Commercial cellulase preparations are poten-tially effective for processing biomass feedst...
Predicting the hydrolytic potential of a “cellulase enzyme cocktail” on lignocellulosic substrates i...
Cellulases are enzymes that are attracting worldwide attention because of their ability to degrade c...
Cellulases are enzymes that are attracting worldwide attention because of their ability to degrade c...
There is tremendous social and political interest in the production of sustainable and carbon neutra...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
Abstract In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocell...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
This research project was designed to play a vital role in the development of low cost sugars from c...
In the shadow of a burgeoning biomass-to-fuels industry, biological conversion of lignocellulose to ...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
Predicting the hydrolytic potential of a “cellulase enzyme cocktail” on lignocellulosic substrates i...
Commercial cellulase preparations are potentially effective for processing biomass feedstocks in ord...
Abstract: Commercial cellulase preparations are poten-tially effective for processing biomass feedst...
Predicting the hydrolytic potential of a “cellulase enzyme cocktail” on lignocellulosic substrates i...