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One such system, wastewater treatment, relies on a process known as enhanced biological phosphorus removal (EBPR; [4]) to remove dissolved organic carbon and phosphorus.
Activated sludge systems are designed and operated globally to remove phosphorus microbiologically, a process called enhanced biological phosphorus removal (EBPR).
The treatment of hyperphosphatemia includes decreasing intestinal phosphorus load and increasing renal phosphorus removal.
LECA also played a significant role in phosphorus removal.
One specific source was aluminum added for phosphorus removal.
In addition, influent phosphorus concentration had effect on phosphorus removal.
The phosphorus removal treatment plant is illustrated via a case study where the addition of extra carbon source and metal salts for improving phosphorus removal are considered.
The enhanced biological phosphorus removal (EBPR) method is widely adopted for phosphorus removal from waste-water, yet little is known about its microbiological and molecular mechanisms.
The RBC has been applied with only limited success for enhanced biological phosphorus removal and attained up to 70% total phosphorus removal.
A two-slag practice is then followed for sufficient phosphorus removal, with the first slag runoff being sold for fertilizer.
Algae growth rate controls directly and indirectly the nitrogen and phosphorus removal efficiency.
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