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Monitoring of the Treatment of Leachate by Two Phase Anaerobic Membrane Process (TPAMP)  

Hwang, Moon H. (Bio-Environmental Engineering Lab (BEEL), Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology (K-JIST))
Hyun, Seong H. (Bio-Environmental Engineering Lab (BEEL), Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology (K-JIST))
Jang, Nam J. (Bio-Environmental Engineering Lab (BEEL), Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology (K-JIST))
Cho, Jea W. (Bio-Environmental Engineering Lab (BEEL), Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology (K-JIST))
Kim, In S. (Bio-Environmental Engineering Lab (BEEL), Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology (K-JIST))
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Abstract
Landfill leachate is one of highly contaminated and heterogeneous wastewater. The leachate from initial landfill can be treated by anaerobic process because it contains biodegradable matters, particularly, volatile fatty acids (VFAs). However, the anaerobic treatment of leachate is generally required longer hydraulic retention time (HRT) than aerobic process and another treatment process to satisfy effluent concentration. Therefore the modification of conventional anaerobic treatment is needed. Two phase anaerobic membrane process (TPAMP) is an integrated membrane process to be able to separate anaerobic metabolism into two phase which are acidogenesis and methanogenesis for improvement of anaerobic treatment efficiency. In this study, the efficiency of TPAMP and conventional anaerobic treatment were compared in terms of HRT, effluent SCOD, VFAs Membrane used in TPAMP was the UF of capillary type with the surface area of $0.048m^2$. The average effluent SCOD of conventional anaerobic treatment was 1352 mg/L and the removal was 96 % at HRT 60 days, while in TPAMP, 927 mg/L and 98% at HRT 30 days.
Keywords
TPAMP (Two Phase Anaerobic Membrane Process); UF (Ultra Filtration); acidogenesis; methanogenesis;
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