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A 3DBER-S-EC process for simultaneous nitrogen and phosphorus removal from wastewater with low organic carbon content

机译:3DBER-S-EC工艺同时去除有机碳含量低的废水中的氮和磷

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A new process was proposed by integrating a three-dimensional biofilm electrode reactor with sulfur autotrophic denitrification and electrocoagulation within the same reactor. The results indicated that under the wastewater influent condition of NO3−-N = 30 mg/L, COD = 45 mg/L, total phosphorus (TP) = 1.5 mg/L, hydraulic retention time (HRT) = 8 h, and I = 400 mA, the NO3−-N and TP removal of the proposed process reached 89.8% and 83.0%, respectively. It was observed that the electrocoagulation process improved phosphorus removal, while the simultaneous existence of heterotrophic, hydrogen, sulfur and iron autotrophic denitrifying bacteria led to enhanced and stabilized nitrogen removal. TheSulfuritalea hydrogenivorans sk43HandSulfuricella denitrificans skB26were found as the dominant denitrifying bacteria in the electrocoagulation section and the section of biofilm electrode with sulfur filler, respectively. As compared to conventional technologies, the proposed new process can achieve simultaneous, stable and deep nitrogen and phosphorus removal from wastewater treatment plant effluent with low organic carbon content.
机译:通过将三维生物膜电极反应器与硫自养反硝化和电凝结集成在同一反应器中,提出了一种新工艺。结果表明,在NO3--N = 30 mg / L,COD = 45 mg / L,总磷(TP)= 1.5 mg / L,水力停留时间(HRT)= 8 h和I = 400 mA时,拟议工艺中的NO3--N和TP去除率分别达到89.8%和83.0%。观察到电凝过程改善了磷的去除,而异养,氢,硫和铁的自养反硝化细菌的同时存在导致增强和稳定的氮去除。在电凝区和生物膜电极加硫填料区,分别发现了嗜氢硫细菌sk43Hand denitrificans skB26是主要的反硝化细菌。与传统技术相比,所提出的新工艺可以从有机碳含量低的污水处理厂废水中同时,稳定,深层地去除氮和磷。

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