<div><p>Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents. However, the vast majority of research has been conducted on simple mock effluents with little data available on the performance of biosorbents in complex effluents. Here we evaluate the efficacy of dried biomass, biochar, and Fe-treated biomass and biochar to remediate 21 elements from a real-world industrial effluent from a coal-fired power station. The biosorbents were produced from the freshwater macroalga <i>Oedogonium</i> sp. (Chlorophyta) that is native to the industrial site from which the effluent was sourced, and which has been intensively cultivated to provide a feed stock for biosorbents. The effect of pH and exposure ti...
Wastewater treatment may help to reduce water shortages, whilst concurrently recover energy and nutr...
Textile industry utilize a massive amount of dyes for coloring. The dye-containing effluent is relea...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
<div><p>Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of met...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
Ash disposal waters from coal-fired power stations present a challenging water treatment scenario as...
Macroalgae are a productive resource that can be cultured in metal-contaminated waste water for bior...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
The bioremediation of industrial waste water by macroalgae is a sustainable and renewable approach t...
<div><p>Biosorption of heavy metals using dried algal biomass has been extensively described but rar...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
The bioremediation of industrial waste water by macroalgae is a sustainable and renewable approach t...
Wastewater treatment may help to reduce water shortages, whilst concurrently recover energy and nutr...
Textile industry utilize a massive amount of dyes for coloring. The dye-containing effluent is relea...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
<div><p>Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of met...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
Ash disposal waters from coal-fired power stations present a challenging water treatment scenario as...
Macroalgae are a productive resource that can be cultured in metal-contaminated waste water for bior...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
The bioremediation of industrial waste water by macroalgae is a sustainable and renewable approach t...
<div><p>Biosorption of heavy metals using dried algal biomass has been extensively described but rar...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
The bioremediation of industrial waste water by macroalgae is a sustainable and renewable approach t...
Wastewater treatment may help to reduce water shortages, whilst concurrently recover energy and nutr...
Textile industry utilize a massive amount of dyes for coloring. The dye-containing effluent is relea...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...