2007•Unpublished venueRequires access

Study on Treatment of Domestic Wastewater by Submerged Flat MBR

Tong Zhu, Yuanhua Xie, Y.D. Wang, Y.X. Wang, H.J. Zhang

Open publisher page 1 citations

Abstract

The treatment of dormitory and refectory mixed wastewater by a submerged flat membrane bioreactor (MBR) was studied. The A/O MBR system treated wastewater 4 m3/d. The mean removal efficiency of BOD5and CODCrwas more than 95% with the influent concentration of 100~500 mg/L BOD5and 120-900 mg/L CODCr. It was proved that active carbon treatment reduced effluent chroma effectively. At the steady working period (MLSS 8,000~15,000 mg/L), TN and NH3-N removal efficiencies were more than 85%, and that of TP was between 50% and 95%. Besides, this paper studied the membrane fouling mechanism and revealed that membrane fouling was affected by MLSS, particle size distribution of sludge and composition of raw water. We found that the diameter of sludge particles changes with the MLSS. We also found the small particles caused membrane fouling. The results proved that submerged flat MBR was suitable to treat small-or-medium-size domestic and industrial wastewater and would have a promising future.

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What this paper is about

The treatment of dormitory and refectory mixed wastewater by a submerged flat membrane bioreactor (MBR) was studied. The A/O MBR system treated wastewater 4 m3/d. The mean removal efficiency of BOD5and CODCrwas more than 95% with the influent concentration of 100~500 mg/L BOD5and 120-900 mg/L CODCr. It was proved that active carbon treatment reduced effluent chroma effectively. At the steady working period (MLSS 8,000~15,000 mg/L), TN and NH3-N removal efficiencies were more than 85%, and that of TP was between 50% and 95%. Besides, this paper studied the membrane fouling mechanism and revealed that membrane fouling was affected by MLSS, particle size distribution of sludge and composition of raw water. We found that the diameter of sludge particles changes with the MLSS. We also found the small particles caused membrane fouling. The results proved that submerged flat MBR was suitable to treat small-or-medium-size domestic and industrial wastewater and would have a promising future.

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Available abstract

The treatment of dormitory and refectory mixed wastewater by a submerged flat membrane bioreactor (MBR) was studied. The A/O MBR system treated wastewater 4 m3/d. The mean removal efficiency of BOD5and CODCrwas more than 95% with the influent concentration of 100~500 mg/L BOD5and 120-900 mg/L CODCr. It was proved that active carbon treatment reduced effluent chroma effectively. At the steady working period (MLSS 8,000~15,000 mg/L), TN and NH3-N removal efficiencies were more than 85%, and that of TP was between 50% and 95%. Besides, this paper studied the membrane fouling mechanism and revealed that membrane fouling was affected by MLSS, particle size distribution of sludge and composition of raw water. We found that the diameter of sludge particles changes with the MLSS. We also found the small particles caused membrane fouling. The results proved that submerged flat MBR was suitable to treat small-or-medium-size domestic and industrial wastewater and would have a promising future.

Key concepts: Membrane bioreactor, Wastewater, Sewage treatment, Chemistry, Pulp and paper industry, Chromatography, Environmental engineering, Environmental science

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