Abstract Different technologies may be used for decolorization of wastewater containing dyes. Among them, biological processes are the most promising because they seem to be environmentally safe. The aim of this study was to determine the efficiency of decolorization of two dyes belonging to different classes (azo and triphenylmethane dyes) by immobilized biomass of strains of fungi (Pleurotus ostreatus - BWPH, Gleophyllum odoratum - DCa and Polyporus picipes - RWP17). Different solid supports were tested for biomass immobilization. The best growth of fungal strains was observed on the washer, brush, grid and sawdust supports. Based on the results of dye adsorption, the brush and the washer were selected for further study. These solid suppo...
Although Boutique industry is a cultural heritage of Malaysia, the coloured effluent discharged from...
This work aims at optimizing the high cell density fungal cultivation for producing large quantities...
AbstractThis work aims at optimizing the high cell density fungal cultivation for producing large qu...
Dyes are the most difficult constituents to remove by conventional biological wastewater treatment. ...
One of the ways to increase the efficiency of the decolorization process is the immobilization of bi...
The biosorption potential of three fungal waste-biomasses (Acremonium strictum, Acremonium sp. and P...
Wastewater of textile industry is considered as toxic waste containing various dyes and chemicals th...
ABSTRACT Reactive dyes are found in the final effluents of the textile industry and cannot be remove...
Synthetic dyes are replacing natural dyes in modern textile industries. However, each year, about 10...
An isolated fungus, Aspergillus foetidus was found to effectively decolorize media containing azo re...
In the present work, decolorization of dyes Orange II and Black V by the fungi Pycnoporus sanguineus...
Biological decolorization of textile dyestuff Everzol Turquoise Blue G, a phthalocyanin type reactiv...
An isolated fungus, Aspergillus foetidus was found to effectively decolorize media containing azo re...
Abstract The biodegradation of synthetic dyes by fungi is emerging as an effective and promising app...
AbstractColored industrial effluents have become a vital source of water pollution, and because wate...
Although Boutique industry is a cultural heritage of Malaysia, the coloured effluent discharged from...
This work aims at optimizing the high cell density fungal cultivation for producing large quantities...
AbstractThis work aims at optimizing the high cell density fungal cultivation for producing large qu...
Dyes are the most difficult constituents to remove by conventional biological wastewater treatment. ...
One of the ways to increase the efficiency of the decolorization process is the immobilization of bi...
The biosorption potential of three fungal waste-biomasses (Acremonium strictum, Acremonium sp. and P...
Wastewater of textile industry is considered as toxic waste containing various dyes and chemicals th...
ABSTRACT Reactive dyes are found in the final effluents of the textile industry and cannot be remove...
Synthetic dyes are replacing natural dyes in modern textile industries. However, each year, about 10...
An isolated fungus, Aspergillus foetidus was found to effectively decolorize media containing azo re...
In the present work, decolorization of dyes Orange II and Black V by the fungi Pycnoporus sanguineus...
Biological decolorization of textile dyestuff Everzol Turquoise Blue G, a phthalocyanin type reactiv...
An isolated fungus, Aspergillus foetidus was found to effectively decolorize media containing azo re...
Abstract The biodegradation of synthetic dyes by fungi is emerging as an effective and promising app...
AbstractColored industrial effluents have become a vital source of water pollution, and because wate...
Although Boutique industry is a cultural heritage of Malaysia, the coloured effluent discharged from...
This work aims at optimizing the high cell density fungal cultivation for producing large quantities...
AbstractThis work aims at optimizing the high cell density fungal cultivation for producing large qu...