Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energy. However, their commercial use is limited by their costs and low reusability. Therefore, the scientific and industrial sectors are focusing on finding better strategies to reuse enzymes and improve their performance. In this work, cellulase from Aspergillus niger was immobilised through in situ entrapment and adsorption on bio-inspired silica (BIS) supports. To the best of our knowledge, this green effect strategy has never been applied for cellulase into BIS. In situ entrapment was performed during support synthesis, applying a one-pot approach at mild conditions (room temperature, pH 7, and water solvent), while adsorption was performed a...
Lignocellulosic biomass that exist abundantly in nature is a potential source for producing environm...
Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, a...
Cellulase is an enzymatic complex which synergically promotes the degradation of cellulose to glucos...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Mesoporous silica materials o_er a unique opportunity for enzyme immobilization thanks to their prop...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
For the past decades, the global trends in the demand of cellulase has been arisen due to its extens...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and oth...
We conducted a study for immobilization of cellulase produced by Aspergillus tubingensis-IMMIS2 thro...
Lipase (Candida antarctica lipase B) was immobilised on silica that was produced via a mild route us...
Lignocellulosic biomass that exist abundantly in nature is a potential source for producing environm...
Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, a...
Cellulase is an enzymatic complex which synergically promotes the degradation of cellulose to glucos...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Mesoporous silica materials o_er a unique opportunity for enzyme immobilization thanks to their prop...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
For the past decades, the global trends in the demand of cellulase has been arisen due to its extens...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and oth...
We conducted a study for immobilization of cellulase produced by Aspergillus tubingensis-IMMIS2 thro...
Lipase (Candida antarctica lipase B) was immobilised on silica that was produced via a mild route us...
Lignocellulosic biomass that exist abundantly in nature is a potential source for producing environm...
Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, a...
Cellulase is an enzymatic complex which synergically promotes the degradation of cellulose to glucos...