In view of the heath problems induced by the presence into the environment of endocrine disruptors, laccase from Trametes versicolor was covalently immobilized on a chemically modified polypropylene membrane in order to remove phenol and its derivatives from polluted waters. Using phenol as substrate model the optimal immobilization conditions were determined. The immobilized laccase exhibited maximal enzyme activity at pH 5.5 and optimal temperature at 55 °C. These operative parameters have been compared with those obtained with the soluble laccase in order to ascertain the immobilization effect. When employed in a bioreactor operating under isothermal conditions the immobilized laccase was able to oxidize a wide range of phenolic substrat...
Over the past decades, water pollution by trace organic compounds (ng L−1) has become one of the key...
Enzymes are specific biological catalysts able to react under mild conditions of temperature and pH ...
Industrial wastewater pollution caused by aromatic compounds is still of high concern due to their t...
In view of the heath problems induced by the presence into the environment of endocrine disruptors, ...
Laccase from Rhus vernicifera was immobilized on a polypropylene membrane chemically modified with c...
Laccase from Rhus vernicifera was immobilised on a nylon membrane chemically grafted with glycidyl m...
The results of a study of immobilisation of a commercial laccase onto a spiral-wound asymmetric poly...
A fluidized bed reactor, filled with laccase-based beads, has been employed to bioremediate aqueous ...
This paper describes the degradation of phenolic compounds by laccases from Trametes versicolor in a...
A planar bioreactor, equipped with a polypropylene membrane on which a lipase was immobilised, has b...
Over the past decades, water pollution by trace organic compounds (ng L-1) has become a major societ...
Lignolytic enzymes are very promising tools for biotechnological applications in water treatment. Am...
The oxidative biodegradation of 2- and 4-chlorophenol (CPs) catalyzed by immobilized laccase from Tr...
Immobilization of enzymes increases stability of enzymes and their re-use in multiple cycles. Mesopo...
The behavior of three different catalytic membranes, obtained by immobilizing urease on nylon sheets...
Over the past decades, water pollution by trace organic compounds (ng L−1) has become one of the key...
Enzymes are specific biological catalysts able to react under mild conditions of temperature and pH ...
Industrial wastewater pollution caused by aromatic compounds is still of high concern due to their t...
In view of the heath problems induced by the presence into the environment of endocrine disruptors, ...
Laccase from Rhus vernicifera was immobilized on a polypropylene membrane chemically modified with c...
Laccase from Rhus vernicifera was immobilised on a nylon membrane chemically grafted with glycidyl m...
The results of a study of immobilisation of a commercial laccase onto a spiral-wound asymmetric poly...
A fluidized bed reactor, filled with laccase-based beads, has been employed to bioremediate aqueous ...
This paper describes the degradation of phenolic compounds by laccases from Trametes versicolor in a...
A planar bioreactor, equipped with a polypropylene membrane on which a lipase was immobilised, has b...
Over the past decades, water pollution by trace organic compounds (ng L-1) has become a major societ...
Lignolytic enzymes are very promising tools for biotechnological applications in water treatment. Am...
The oxidative biodegradation of 2- and 4-chlorophenol (CPs) catalyzed by immobilized laccase from Tr...
Immobilization of enzymes increases stability of enzymes and their re-use in multiple cycles. Mesopo...
The behavior of three different catalytic membranes, obtained by immobilizing urease on nylon sheets...
Over the past decades, water pollution by trace organic compounds (ng L−1) has become one of the key...
Enzymes are specific biological catalysts able to react under mild conditions of temperature and pH ...
Industrial wastewater pollution caused by aromatic compounds is still of high concern due to their t...