For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic framework (MOF) material, UIO-66-NH2. The as-prepared immobilized cellulase demonstrated a high protein loading efficiency of 126.2 g/g support and a high enzyme activity recovery of 78.4%. Cellulase immobilized on magnetic UIO-66-NH2 exhibited a superior performance in terms of pH stability, thermal stability and catalytic efficiency compared to its free form. Notably, immobilized cellulase could be recycled for up to 5 consecutive runs. Furthermore, compared to free cellulase, immobilized cellulase showed better tolerance to formic acid and vanillin, two typical inhibitors found in lignocellulosic prehydrolysates. In the presence of 5 g/L of ...
We conducted a study for immobilization of cellulase produced by Aspergillus tubingensis-IMMIS2 thro...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and oth...
Abstract Objectives Enzyme/metal-organic framework composites with high stability in protein denatur...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
The utilization of renewable biomass resources to produce high-value chemicals by enzymatic processe...
Typescript (photocopy).Cellulase was immobilized on magnetite particles with a polymer spacer. Sever...
In this research, a magnetic reusable nickel nanoparticle (NiNPs) supporting materials were prepared...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, a...
The bacterial cellulose (BC) is a versatile biopolymer of microbial origin characterized by high pur...
Cellulase was immobilized on chitosan by the method of covalent binding. The optimum immobilized con...
We conducted a study for immobilization of cellulase produced by Aspergillus tubingensis-IMMIS2 thro...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and oth...
Abstract Objectives Enzyme/metal-organic framework composites with high stability in protein denatur...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
The utilization of renewable biomass resources to produce high-value chemicals by enzymatic processe...
Typescript (photocopy).Cellulase was immobilized on magnetite particles with a polymer spacer. Sever...
In this research, a magnetic reusable nickel nanoparticle (NiNPs) supporting materials were prepared...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, a...
The bacterial cellulose (BC) is a versatile biopolymer of microbial origin characterized by high pur...
Cellulase was immobilized on chitosan by the method of covalent binding. The optimum immobilized con...
We conducted a study for immobilization of cellulase produced by Aspergillus tubingensis-IMMIS2 thro...
Cellulases are a important family of hydrolytic enzymes which catalyze the bond of cellulose and oth...
Abstract Objectives Enzyme/metal-organic framework composites with high stability in protein denatur...