The removal efficiency of Cu(2+) by Spirulina platensis (strain FACHB-834), in viable and heat-inactivated forms, was investigated in the presence and absence of linear alkylbenzene sulfonate (LAS). When the initial Cu(2+) concentration was in the range of 0.5-1.5 mg · L(-1) , a slight increase in growth rate of FACHB-834 was observed. In contrast, when Cu(2+) or LAS concentrations were at or higher than 2.0 or 6.0 mg · L(-1) , respectively, the growth of FACHB-834 was inhibited and displayed yellowing and fragmentation of filaments. The presence of LAS improved Cu(2+) removal by ~20%, and accelerated attainment of Cu(2+) retention equilibrium. For the 2- mg · L(-1) Cu(2+) treatments, retention equili...
This study reports a new approach of alga amendment in a live mode. The Caulerpa sertularioides alga...
Heavy metal contamination from mining and other industrial operations is becoming an increasing prob...
The efficiency of cellulose xanthogenate derived from Imperata cylindrica L. leaf powder (CXIC) for ...
The removal efficiency of Cu(2+) by Spirulina platensis (strain FACHB-834), in viable and heat-inact...
The removal efficiency of Cu2+ by Spirulina platensis (strain FACHB-834), in viable and heat-inactiv...
The mining industry generates huge amounts of wastewater, containing toxic heavy metals. Treatment t...
In the present work, hydrated biomass of Spirulina platensis has been used for copper removal from a...
AbstractIn this study, the economically important micro-alga (cyanobacterium) Spirulina platensis wa...
Dry biomass of Spirulina platensis was used as biosorbent for copper removal from water
The simultaneous effects of increasing concentration of pre-hydrated biomass of Spirulina platensis ...
The biosorption process, characterized by the use of biomass for removing metals from aqueous soluti...
Copper (Cu) is a heavy metal that is widely used in industry and as such wastewater from mining or i...
The biosorption of Cu 2+ by free and poly acrylamide gel (PAG) immobilized Spirulina platensis ( Spi...
The concentration of metal ions in aqueous media is a major environmental problem due to their persi...
Cyanobacteria are promising biosorbent for heavy metals in bioremediation. Although sequestration of...
This study reports a new approach of alga amendment in a live mode. The Caulerpa sertularioides alga...
Heavy metal contamination from mining and other industrial operations is becoming an increasing prob...
The efficiency of cellulose xanthogenate derived from Imperata cylindrica L. leaf powder (CXIC) for ...
The removal efficiency of Cu(2+) by Spirulina platensis (strain FACHB-834), in viable and heat-inact...
The removal efficiency of Cu2+ by Spirulina platensis (strain FACHB-834), in viable and heat-inactiv...
The mining industry generates huge amounts of wastewater, containing toxic heavy metals. Treatment t...
In the present work, hydrated biomass of Spirulina platensis has been used for copper removal from a...
AbstractIn this study, the economically important micro-alga (cyanobacterium) Spirulina platensis wa...
Dry biomass of Spirulina platensis was used as biosorbent for copper removal from water
The simultaneous effects of increasing concentration of pre-hydrated biomass of Spirulina platensis ...
The biosorption process, characterized by the use of biomass for removing metals from aqueous soluti...
Copper (Cu) is a heavy metal that is widely used in industry and as such wastewater from mining or i...
The biosorption of Cu 2+ by free and poly acrylamide gel (PAG) immobilized Spirulina platensis ( Spi...
The concentration of metal ions in aqueous media is a major environmental problem due to their persi...
Cyanobacteria are promising biosorbent for heavy metals in bioremediation. Although sequestration of...
This study reports a new approach of alga amendment in a live mode. The Caulerpa sertularioides alga...
Heavy metal contamination from mining and other industrial operations is becoming an increasing prob...
The efficiency of cellulose xanthogenate derived from Imperata cylindrica L. leaf powder (CXIC) for ...