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Impact of increasing sulfide addition on the nitrogen removal and microbial community of CANON process in membrane bioreactor

机译:增加硫化硫醚对膜生物反应器氮去除和微生物群落的影响

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摘要

Simultaneous removal of nitrogen and sulfur pollutants was an urgent issue since they coexisted in many kinds of wastewater and led to the black-odor water. In this study, sulfide was step-wise increased and added to the completely autotrophic nitrogen removal (CANON) system, to investigate its impact. Results showed that autotrophic denitrification was successfully induced and then improved the total nitrogen removal efficiency (TNRE) to 91.9 % from 83.7 %, when 0-5 mg L-1 sulfide was supplied. However, 50 mg L-1 sulfide significantly decreased TNRE to 42.9 %, together with the decrease of hydroxylamine oxidoreductase activity to 1.05 from 1.77 EU g(-1) SS and Heme-c to 0.15 from 0.28 mu M g(-1) SS. CANON system can resist the sulfide shock after acclimatization, the TNRE slightly decreased to 82.9 % when 50 mg L-1 sulfide was supplied again. Prominent nitrogen removal was achieved in CANON system with 5 mg L-1 sulfide, by the cooperative contribution of CANON bacteria (5.77 % Nitrosomonas, 20.2 % Candidatus Kuenenia) and denitrifying bacteria (7.52 % Truepera, 1.79 % Denitratisoma and 3.72 % Arenimonas).
机译:同时除去氮和硫污染物是一种紧急问题,因为它们在多种废水中共存并导致了黑色气味。在这项研究中,硫化物是逐步增加并加入到完全自养氮去除(佳能)系统中,以研究其影响。结果表明,当供应0-5mg L-1硫化物时,成功诱导了自养脱氮,然后从83.7%提高了总氮去除效率(TNRE)至91.9%。然而,50mg的L-1硫化物显着降低至42.9%,与羟胺氧化酶活性降低至1.05,从1.77 Eu g(-1)Ss和血红素-c从0.28 mu m g(-1)ss为0.15 。佳能系统可抵抗硫化物休克后均匀,当再次供应50mg L-1硫化物时,TNRE略微降至82.9%。众所周知的氮去除在佳能系统中达到5mg L-1硫化物,通过Canon Bacteria的合作贡献(5.77%亚硝基菌,20.2%Candidatus Kuenenia)和反硝化细菌(7.52%Truepera,1.79%的Denitratisoma和3.72%的arenimonas)。

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