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Autotrophic nitrogen removal characteristics of PN-anammox process enhanced by sulfur autotrophic denitrification under mainstream conditions

机译:基于主流条件下硫自养反硝化的PN-anammox方法的自养氮去除特性

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摘要

Stabilization of nitrification process and reduction of NO3--N concentration in effluent are the keys to realize mainstream application of partial nitrification-anaerobic ammonia oxidation (PN-anammox) process. The sulfur-based autotrophic denitrification (SADN) process was coupled with the PN-anammox in a single reactor to enhance and stabilize the nitrogen removal performance, and the feasibility and reaction characteristics of the coupling system under mainstream conditions were investigated. The results showed that the NO3- of PN-anammox effluent dropped from 22 to 24 mg/L to 5 mg/L after the SADN process coupled, and the total nitrogen removal efficiency and total nitrogen removal rate reached 83.5% and 0.15 kg/(m(3).d), respectively. This coupling system doesn't need to over-strengthen PN control. Batch experiments showed that sulfur autotrophic oxidizing bacteria used O-2 to oxidize S2- in the coupling system, which competed with SADN to remove NO3-. Moreover, Nitrosomonas, Candidatus Brocadia and Thiobacillus were the main genera for nitrogen and sulfur conversion.
机译:硝化过程的稳定化和废水中NO 3 - N浓度的浓度是实现部分硝化厌氧氨氧化(PN-anammox)方法的主流应用的键。基于硫的自抗脱氮(SADN)方法与单一反应器中的PN-anammox偶联,以增强和稳定氮去除性能,并研究了偶联系统在主流条件下的可行性和反应特性。结果表明,在SADN工艺偶联之后,PN-anammox流出物的NO3-滴落液滴从22-24mg / L至5mg / L.和总氮去除效率和总氮去除率达到83.5%和0.15kg /( M(3).D)分别。该耦合系统不需要过度加强PN控制。批量实验表明,硫自养氧化细菌使用O-2氧化S2-在偶联系统中,竞争SADN以去除NO3-。此外,亚硝基菌,Candidatus Brocadia和Thiobacillus是氮和硫转化的主要属。

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