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Nitrogen and Phosphorus Removal Characteristics from Domestic Sewage using Two Stage Membrane Bioreactor  

Park, Jae-Roh (Water Resources & Environmental Research Div., Korea Institute of Construction Technology)
Lim, Hyun-man (Water Resources & Environmental Research Div., Korea Institute of Construction Technology)
Kim, Eoung Ho (Dept. of Civil Eng., Hong-Ik University)
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Abstract
Laboratory-scale membrane bioreactor added alum into the anaerobic basin as a flocculant and adsorbent was carried out to find removal efficient of nitrogen and phosphorus components in the mixed liquid and weather or not maintaining the stability for the permeate flux and pressure at various internal recycle conditions. It was found that denitrification efficient of maximum 65% was obtained when the ratio of internal recycle was 3Q. Additionally when the ratio of internal recycle was fixed at 3Q, $BOD_5$ and T-P concentration of permeate was much more reduced compared to not added alum in anaerobic basin but T-N concentration of permeate was relatively increased. In case of added alum as the flocculant and adsorbent in anaerobic basin, the permeate flux was maintained above $10{\ell}/m^2/hr$ but the permeate pressure was relatively higher than alum was not added in anaerobic basin.
Keywords
Membrane bioreactor; internal recycle rate; T-N; T-P removal;
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