| Literature DB >> 24393562 |
Xiao-ming Li1, Hong-bo Chen1, Qi Yang2, Dong-bo Wang3, Kun Luo4, Guang-ming Zeng1.
Abstract
Previous researches have demonstrated that biological phosphorus removal from wastewater could be induced by oxic/extended-idle (O/EI) regime. In this study, an anoxic period was introduced after the aeration to realize biological nutrient removal. High nitrite accumulation ratio and polyhydroxyalkanoates biosynthesis were obtained in the aeration and biological nutrient removal could be well achieved in oxic/anoxic/extended-idle (O/A/EI) regime for the wastewater used. In addition, nitrogen and phosphorus removal performance in O/A/EI regime was compared with that in conventional anaerobic/anoxic/aerobic (A(2)/O) and O/EI processes. The results showed that O/A/EI regime exhibited higher nitrogen and phosphorus removal than A(2)/O and O/EI processes. More ammonium oxidizing bacteria and polyphosphate accumulating organisms and less glycogen accumulating organisms containing in the biomass might be the principal reason for the better nitrogen and phosphorus removal in O/A/EI regime. Furthermore, biological nutrient removal with O/A/EI regime was demonstrated with municipal wastewater. The average TN, SOP and COD removal efficiencies were 93%, 95% and 87%, respectively.Entities:
Keywords: Biological nutrient removal; Denitrification; Enhanced biological phosphorus removal; Oxic/anoxic/extended-idle regime; Polyhydroxyalkanoates
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Year: 2014 PMID: 24393562 DOI: 10.1016/j.chemosphere.2013.12.043
Source DB: PubMed Journal: Chemosphere ISSN: 0045-6535 Impact factor: 7.086