<div><p>Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids and metals, respectively. However, the treatment of complex effluents that contain both metalloid and metal contaminants presents a challenging scenario. We test a multiple-biosorbent approach to bioremediation using Fe-biochar and biochar to remediate both metalloids and metals from the effluent from a coal-fired power station. First, a model was derived from published data for this effluent to predict the biosorption of 21 elements by Fe-biochar and biochar. The modelled outputs were then used to design biosorption experiments using Fe-biochar and biochar, both simultaneously and in sequence, to treat effluent containing multiple co...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
In this study, pristine biochar derived from date palm at 500°C was used in batch reactors (simulati...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
<div><p>Biosorption with macroalgae is a promising technology for the bioremediation of industrial e...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
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...
The production of biosorbents and biochars from various biowastes (such as the agricultural and food...
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...
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...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
In this study, pristine biochar derived from date palm at 500°C was used in batch reactors (simulati...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
Fe-treated biochar and raw biochar produced from macroalgae are effective biosorbents of metalloids ...
<div><p>Biosorption with macroalgae is a promising technology for the bioremediation of industrial e...
Biosorption with macroalgae is a promising technology for the bioremediation of industrial effluents...
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...
The production of biosorbents and biochars from various biowastes (such as the agricultural and food...
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...
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...
Biosorption of heavy metals using dried algal biomass has been extensively described but rarely impl...
In this study, pristine biochar derived from date palm at 500°C was used in batch reactors (simulati...
Macroalgae can be grown in industrial waste water to sequester metals and the resulting biomass used...