The use of magnetic biocatalysts is highly beneficial in bioprocesses technology, as it allows their easy recovering and enhances biocatalyst lifetime. Thus, it simplifies operational processing and increases efficiency, leading to more cost-effective processes. The use of small-size matrices as carriers for enzyme immobilization enables to maximize surface area and catalysts loading, also reducing diffusion limitations. As highly expensive nanoparticles (nm size) usually aggregate, their application at large scale is not recommended. In contrast, the use of magnetic micro-macro (µm-mm size) matrices leads to more homogeneous biocatalysts with null or very low aggregation, which facilitates an easy handling and recovery. The present review ...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
The immobilization of Candida antarctica lipase B (CALB) was carried out using glutaraldehyde (GLUT)...
The exploitation of nanocatalysts, at the boundary between homogeneous and heterogeneous catalysis, ...
The use of magnetic biocatalysts is highly beneficial in bioprocesses technology, as it allows their...
In this short review (Perspective), we identify key features of the performance of biocatalysts deve...
Biocatalysts based on immobilized enzymes received considerable attention due to important applicati...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
© 2016 The Royal Society of Chemistry. Enzyme immobilization on commercial superparamagnetic nanopar...
Nanobiocatalysis, as the synergistic combination of nanotechnology and biocatalysis, is rapidly emer...
Recovery and reuse of enzymes can reduce the high enzyme costs that are challenging for cellulosic b...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Biodiesel is an alternative fuel in many developing and developed countries worldwide. Biodiesel has...
doi: 10.3389/fchem.2014.00072 Magnetic biocatalysts and their uses to obtain biodiesel and biosurfac...
Biodiesel is an alternative fuel in many developing and developed countries worldwide. Biodiesel has...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
The immobilization of Candida antarctica lipase B (CALB) was carried out using glutaraldehyde (GLUT)...
The exploitation of nanocatalysts, at the boundary between homogeneous and heterogeneous catalysis, ...
The use of magnetic biocatalysts is highly beneficial in bioprocesses technology, as it allows their...
In this short review (Perspective), we identify key features of the performance of biocatalysts deve...
Biocatalysts based on immobilized enzymes received considerable attention due to important applicati...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
© 2016 The Royal Society of Chemistry. Enzyme immobilization on commercial superparamagnetic nanopar...
Nanobiocatalysis, as the synergistic combination of nanotechnology and biocatalysis, is rapidly emer...
Recovery and reuse of enzymes can reduce the high enzyme costs that are challenging for cellulosic b...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
Microbial laccases are powerful enzymes capable of degrading lignin and other recalcitrant compounds...
Biodiesel is an alternative fuel in many developing and developed countries worldwide. Biodiesel has...
doi: 10.3389/fchem.2014.00072 Magnetic biocatalysts and their uses to obtain biodiesel and biosurfac...
Biodiesel is an alternative fuel in many developing and developed countries worldwide. Biodiesel has...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
The immobilization of Candida antarctica lipase B (CALB) was carried out using glutaraldehyde (GLUT)...
The exploitation of nanocatalysts, at the boundary between homogeneous and heterogeneous catalysis, ...