The utilization of renewable biomass resources to produce high-value chemicals by enzymatic processes is beneficial for alternative energy production, due to the accelerating depletion of fossil fuels. As immobilization techniques can improve enzyme stability and reusability, a novel magnetic cross-linked cellulase aggregate has been developed and applied for biomass bioconversion. The crosslinked aggregates could purify and immobilize enzymes in a single operation, and could then be combined with magnetic nanoparticles (MNPs), which provides easy separation of the materials. The immobilized cellulase showed a better activity at a wider temperature range and pH values than that of the free cellulase. After six cycles of consecutive reuse, t...
The constant increase in the number of sustainable products on the global markets demands new biotec...
[EN] For producing second-generation ethanol (cellulosic ethanol) and other value-added bioproducts,...
Methods of cellulase immobilization on magnetic particles via glutaraldehyde binding were studied. T...
International audienceEnzyme cocktails of reusable, highly stable cellulolytic enzymes play an inevi...
Enzymatic hydrolysis is a key process for lignocellulosic biomass conversion; a way to increase its ...
In this research, a magnetic reusable nickel nanoparticle (NiNPs) supporting materials were prepared...
Enzyme cocktails of reusable, highly stable cellulolytic enzymes play an inevitable role in bioconve...
Current cellulosic biomass hydrolysis is based on the one-time use of cellulases. Cellulases immobil...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Cross-linked enzyme aggregates (CLEAs) represent an effective tool for carrier-free immobilization o...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Previous research focused on pretreatment of biomass, production of fermentable sugars and their con...
Biomass is a sustainable and renewable energy resource that can be converted to liquid transportatio...
Immobilization of cellulases on magnetic particles to enable enzyme recycling during hydrolysis of l...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
The constant increase in the number of sustainable products on the global markets demands new biotec...
[EN] For producing second-generation ethanol (cellulosic ethanol) and other value-added bioproducts,...
Methods of cellulase immobilization on magnetic particles via glutaraldehyde binding were studied. T...
International audienceEnzyme cocktails of reusable, highly stable cellulolytic enzymes play an inevi...
Enzymatic hydrolysis is a key process for lignocellulosic biomass conversion; a way to increase its ...
In this research, a magnetic reusable nickel nanoparticle (NiNPs) supporting materials were prepared...
Enzyme cocktails of reusable, highly stable cellulolytic enzymes play an inevitable role in bioconve...
Current cellulosic biomass hydrolysis is based on the one-time use of cellulases. Cellulases immobil...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Cross-linked enzyme aggregates (CLEAs) represent an effective tool for carrier-free immobilization o...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Previous research focused on pretreatment of biomass, production of fermentable sugars and their con...
Biomass is a sustainable and renewable energy resource that can be converted to liquid transportatio...
Immobilization of cellulases on magnetic particles to enable enzyme recycling during hydrolysis of l...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
The constant increase in the number of sustainable products on the global markets demands new biotec...
[EN] For producing second-generation ethanol (cellulosic ethanol) and other value-added bioproducts,...
Methods of cellulase immobilization on magnetic particles via glutaraldehyde binding were studied. T...