Laccase from Trametes versicolor was immobilized on magnetic chitosan-clay composite beads by glutaraldehyde crosslinking. The physical, chemical, and biochemical properties of the immobilized laccase and its application in phenol removal were comprehensively investigated. The structure and morphology of the composite beads were characterized by SEM, TGA, and FTIR analyses. The immobilized laccase showed better storage stability and higher tolerance to the changes in pH and temperature compared with free laccase. Moreover, the immobilized laccase retained more than 75% of its original activity after 10 cycles. The efficiency of phenol removal by immobilized laccase was about 80% under the optimum conditions after 4 h
Immobilization of laccase has been highlighted to enhance their stability and reusability in bioreme...
Magnetic poly(p-phenylenediamine) (PpPD) nanocomposite was synthesized via mixing p-phenylenediamine...
WOS: 000322338300006PubMed ID: 23298234Laccase played an important role in the decolorization of wid...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Laccase from Trametes Versicolor (E.C. 1.10.3.2) was immobilized on the Fe3O4–graphene hybrid nanoco...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Three types of improved Fe3O4 magnetic nanoparticles (MNPs), including poly(amidoisophthalicacid) co...
WOS: 000414878300026Immobilization improves the stability and reusability of enzymes. In this study,...
Oxidative biocatalysis by laccase arises as a promising alternative in the development of advanced o...
Oxidative biocatalysis by laccase arises as a promising alternative in the development of advanced o...
This preliminary studies concerns preparation of biopolymer carriers for immobilization of laccase f...
Laccase from Trametes versicolor was immobilized on magnetic (Fe3O4) nanoparticles and microparticle...
Poly(MA-alt-MVE)-g-PLA/ODA-MMT nanocomposite was prepared by self-catalytic interlamellar graft copo...
In this paper, magnetic host/guest-type immobilized laccase was prepared by co-adsorption of super-p...
In this study, immobilization of laccase (L) enzyme on magnetite (Fe(3)O(4)) nanoparticles was achie...
Immobilization of laccase has been highlighted to enhance their stability and reusability in bioreme...
Magnetic poly(p-phenylenediamine) (PpPD) nanocomposite was synthesized via mixing p-phenylenediamine...
WOS: 000322338300006PubMed ID: 23298234Laccase played an important role in the decolorization of wid...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Laccase from Trametes Versicolor (E.C. 1.10.3.2) was immobilized on the Fe3O4–graphene hybrid nanoco...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Three types of improved Fe3O4 magnetic nanoparticles (MNPs), including poly(amidoisophthalicacid) co...
WOS: 000414878300026Immobilization improves the stability and reusability of enzymes. In this study,...
Oxidative biocatalysis by laccase arises as a promising alternative in the development of advanced o...
Oxidative biocatalysis by laccase arises as a promising alternative in the development of advanced o...
This preliminary studies concerns preparation of biopolymer carriers for immobilization of laccase f...
Laccase from Trametes versicolor was immobilized on magnetic (Fe3O4) nanoparticles and microparticle...
Poly(MA-alt-MVE)-g-PLA/ODA-MMT nanocomposite was prepared by self-catalytic interlamellar graft copo...
In this paper, magnetic host/guest-type immobilized laccase was prepared by co-adsorption of super-p...
In this study, immobilization of laccase (L) enzyme on magnetite (Fe(3)O(4)) nanoparticles was achie...
Immobilization of laccase has been highlighted to enhance their stability and reusability in bioreme...
Magnetic poly(p-phenylenediamine) (PpPD) nanocomposite was synthesized via mixing p-phenylenediamine...
WOS: 000322338300006PubMed ID: 23298234Laccase played an important role in the decolorization of wid...