| Literature DB >> 27521780 |
Rui Du1, Shenbin Cao2, Shuying Wang1, Meng Niu1, Yongzhen Peng3.
Abstract
The simultaneous treatment of nitrate (NO3(-)-N∼50mgL(-1)) and domestic wastewater (ammonia (NH4(+)-N)∼60.6mgL(-1), COD∼166.3mgL(-1)) via a novel partial denitrification (PD)-ANaerobic AMMonium OXidation (ANAMMOX) process was investigated at low temperature (12.9∼15.1°C). Results showed that desirable performance was achieved with average NO3(-)-N, NH4(+)-N and COD removal efficiencies of 89.5%, 97.6% and 78.7%, respectively. However, deteriorated sludge settleability in PD reactor was observed during operation, which bulked with serious sludge wash-out, leading to excess NO3(-)-N remaining in PD effluent. Fortunately, a satisfactory nitrogen removal was still achieved due to the occurrence of partial denitrification in ANAMMOX reactor. This was demonstrated by high-throughput sequencing, which revealed that the high nitrite (NO2(-)-N) production denitrifying bacteria of Thauera was detected (6.1%). ANAMMOX (above 70%) maintained the dominant pathway for nitrogen removal, and Candidatus Jettenia was identified as the major ANAMMOX species accounted for 2.7%.Entities:
Keywords: ANAMMOX; Domestic wastewater; High-throughput sequencing analysis; Low temperature; Nitrate; Partial denitrification
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Year: 2016 PMID: 27521780 DOI: 10.1016/j.biortech.2016.07.101
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642