Phosphate recovery from sewage sludge is possible with a bioelectrochemical system (BES) also referred to as microbial fuel/electrolysis cell (MFC, MEC). The investigated process is based on phosphate removal with iron salts, which is extensively used in wastewater treatment. The mechanisms and reaction parameters of the bioelectrochemical phosphate recovery process was examined by modeling and model reactions for future scale up works. The mechanistic analyses concerned the electron reduction process, the role of the pH as well as the observed metal removal capacity. Iron oxidation state analyses showed that the iron reduction mechanism was of negligible importance under microbial electrolysis cell conditions. The cathodic iron reduction w...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m ) in the Baltic area will compel waste...
Phosphate was remobilised from iron phosphate contained in digested sewage sludge using a bio-electr...
Phosphate remobilization from digested sewage sludge containing iron phosphate was scaled-up in a mi...
Phosphate remobilization from digested sewage sludge containing iron phosphate was scaled-up in a mi...
Phosphorus (P) is an important pollutant of concern in wastewater that causes eutrophication and alg...
Phosphate rock is a depleting resource and wastewater a sustainable long-term alternative for phosph...
Phosphate rock is a depleting resource and wastewater a sustainable long-term alternative for phosph...
As problems associated with shortage in resource supply arise, wastewater treatment plants turn to i...
Orthophosphate was mobilized from iron phosphate (FePO4) contained in digested sewage sludge by micr...
A new phosphorus (P) removal and recovery process that integrates an FeCl3-dosing, membrane bioreact...
Orthophosphate was mobilized from iron phosphate (FePO4) contained in digested sewage sludge by micr...
The addition of iron is a convenient way for removing phosphorus from wastewater, but this is often ...
BioIronTech is a biological process of employing iron-reducing bacteria to reduce ferric iron (Fe3+)...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m ) in the Baltic area will compel waste...
Phosphate was remobilised from iron phosphate contained in digested sewage sludge using a bio-electr...
Phosphate remobilization from digested sewage sludge containing iron phosphate was scaled-up in a mi...
Phosphate remobilization from digested sewage sludge containing iron phosphate was scaled-up in a mi...
Phosphorus (P) is an important pollutant of concern in wastewater that causes eutrophication and alg...
Phosphate rock is a depleting resource and wastewater a sustainable long-term alternative for phosph...
Phosphate rock is a depleting resource and wastewater a sustainable long-term alternative for phosph...
As problems associated with shortage in resource supply arise, wastewater treatment plants turn to i...
Orthophosphate was mobilized from iron phosphate (FePO4) contained in digested sewage sludge by micr...
A new phosphorus (P) removal and recovery process that integrates an FeCl3-dosing, membrane bioreact...
Orthophosphate was mobilized from iron phosphate (FePO4) contained in digested sewage sludge by micr...
The addition of iron is a convenient way for removing phosphorus from wastewater, but this is often ...
BioIronTech is a biological process of employing iron-reducing bacteria to reduce ferric iron (Fe3+)...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m −3 ) in the Baltic area will compel wa...
Stringent phosphorus discharge standards (i.e. 0.15–0.3 g P.m ) in the Baltic area will compel waste...