The purpose of this study is to optimize adsorption conditions of powdered alum sludge (PAS) as low-cost adsorbent for the removal of three P-species (ortho-P, poly-P and organic-P) from wastewater using the response surface methodology (RSM). Initially, RSM in the basis of a three-variable Box-Behnken design was used to determine the effect of pH (from 4 to 7), PAS mass (from 0.1 to 0.5 g) and PAS particle size (from 125 to 420 μm) on the response levels (removal efficiencies of the three P-species). Three response surface quadratic models in terms of three factors were then obtained from an analysis of the experimental data using a SAS computer package. Thereafter, the effect of each of the parameters on P removal for each of the three sp...
Excessive phosphorus emission is one of the important reasons for the eutrophication of water. At th...
This study assessed the potential reuse of an aluminium coagulated drinking–water treatment sludge (...
Eutrophication caused by excess phosphorus (P) loading poses serious environmental risk to freshwate...
Alum sludge refers to the by-product from the processing of drinking water in Water Treatment Works....
Drinking-water treatment sludge (DWTS) produced at water treatment plants is an inescapable by-produ...
The adsorption characteristics of phosphate adsorption on the dewatered alum sludge were identified ...
Equilibrium phosphorus (P) adsorption was investigated for nine aluminium-based water treatment slud...
The adsorption equilibrium of a wide range of phosphorus species by an aluminum‐based water treatmen...
The adsorption equilibrium of a wide range of phosphorus species by an aluminium-based water treatme...
Excess phosphorus (P) in wastewaters promotes eutrophication in receiving waterways. A cost-effectiv...
In view of the well recognized need of reject water treatment in MWWTP (municipal wastewater treatme...
Removing phosphorus (P) from the environment is a growing priority for water resource stakeholders. ...
Presence of phosphorus in agriculture and other activities near the water bodies, lead to algae grow...
The generation of alum sludge from drinking water purification process remains inevitable when alumi...
Excessive phosphorus emission is one of the important reasons for the eutrophication of water. At th...
This study assessed the potential reuse of an aluminium coagulated drinking–water treatment sludge (...
Eutrophication caused by excess phosphorus (P) loading poses serious environmental risk to freshwate...
Alum sludge refers to the by-product from the processing of drinking water in Water Treatment Works....
Drinking-water treatment sludge (DWTS) produced at water treatment plants is an inescapable by-produ...
The adsorption characteristics of phosphate adsorption on the dewatered alum sludge were identified ...
Equilibrium phosphorus (P) adsorption was investigated for nine aluminium-based water treatment slud...
The adsorption equilibrium of a wide range of phosphorus species by an aluminum‐based water treatmen...
The adsorption equilibrium of a wide range of phosphorus species by an aluminium-based water treatme...
Excess phosphorus (P) in wastewaters promotes eutrophication in receiving waterways. A cost-effectiv...
In view of the well recognized need of reject water treatment in MWWTP (municipal wastewater treatme...
Removing phosphorus (P) from the environment is a growing priority for water resource stakeholders. ...
Presence of phosphorus in agriculture and other activities near the water bodies, lead to algae grow...
The generation of alum sludge from drinking water purification process remains inevitable when alumi...
Excessive phosphorus emission is one of the important reasons for the eutrophication of water. At th...
This study assessed the potential reuse of an aluminium coagulated drinking–water treatment sludge (...
Eutrophication caused by excess phosphorus (P) loading poses serious environmental risk to freshwate...