Abstract
Taking the public building domestic wastewater as an example, the combination of the MBR (membrane bioreactor) process and the traditional A2/O (anaerobic-anoxic-oxic) process was established and analyzed in terms of the removal effect of the pollutants, the impact of the microbial community changes on the process, the MBR membrane fouling, the cleaning methods, and the cleaning performance. The results indicated that the effluent water quality of the domestic wastewater treated with the A2/O-MBR process was stable and met the emission requirement to the natural water body. There was good microbial diversity in raw water, the anaerobic tank, the anoxic tank, the aerobic MBR tank and the disinfection tank, and the aerobic MBR tank has a wide variety of aerobic microorganisms, which elevates the removal of organics and the nitrification of ammonia nitrogen and ensures the qualification of nitrogen and phosphorus indexes of the system effluent water. For the fouled membrane, the surface of the contaminated membrane was covered by macromolecular contaminants, causing the membrane flux to drop, and after different cleaning methods to the membrane were compared, it was discovered that the combined use of cleaning agents had better effects than the single ones, and the cleaning method of sodium hydroxide followed by hydrochloric acid showed the best effect, achieving a membrane flux restoration ratio above 80% after cleaning.
Subject
Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology
Reference25 articles.
1. Evaluation of sustainability of water resources system of megacities—A case study of Beijing Municipality;Liu;China Water Resour.,2017
2. The prediction to Beijing water shortage risk;Liu;J. Changchun Inst. Technol. Nat. Sci. Ed.,2012
3. Study on domestic wastewater reclamation by A2/O-MBR process based on WWTPs upgrading and reconstruction;Wang;Water Wasterwater Eng.,2015
4. Waster Engineering Treatment and Reuse;Metcaf,2004
5. Enhanced biological phosphorus removal in membrane bioreactors
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