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首页> 外文期刊>Applied Microbiology and Biotechnology >An integrated process of three-dimensional biofilm-electrode with sulfur autotrophic denitrification (3DBER-SAD) for wastewater reclamation
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An integrated process of three-dimensional biofilm-electrode with sulfur autotrophic denitrification (3DBER-SAD) for wastewater reclamation

机译:三维生物膜电极与硫自养反硝化技术(3DBER-SAD)的集成工艺

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摘要

A three-dimensional biofilm-electrode reactor (3DBER) was integrated with sulfur autotrophic denitrification (SAD) to improve nitrogen removal performance for wastewater reclamation. The impacts of influent carbonitrogen (C/N) ratio, electric current, and hydraulic retention time (HRT) were evaluated. The new process, abbreviated as 3DBER-SAD, achieved a more stable denitrification compared to the recently studied 3DBER in literature. Its nitrogen removal improved by about 45 % as compared to 3DBER, especially under low C/N ratio conditions. The results also revealed that the biofilm bacteria community of 3DBER-SAD contained 21.1 % of the genus Thauera, 19.3 % of the genus Thiobacillus and Sulfuricella, as well as 5.3 % of the genus Alicycliphilus, Pseudomonas, and Paracoccus. The synergy between these heterotrophic, sulfur autotrophic, and hydrogenotrophic denitrification bacteria was believed to cause the high and stable nitrogen removal performance under various operating conditions.
机译:将三维生物膜电极反应器(3DBER)与硫自养反硝化(SAD)集成在一起,以提高污水回收中的氮去除性能。评估了进水碳/氮(C / N)比,电流和水力停留时间(HRT)的影响。与文献中最近研究的3DBER相比,该新过程的缩写为3DBER-SAD,实现了更稳定的反硝化作用。与3DBER相比,其氮去除率提高了约45%,尤其是在低C / N比条件下。结果还显示,3DBER-SAD的生物膜细菌群落包含21.1%的Thauera属,19.3%的硫杆菌属和Sulfuricella属,以及5.3%的Alicycliphilus,Pseudomonas和Paracoccus属。这些异养,自养硫和氢养反硝化细菌之间的协同作用被认为可在各种操作条件下引起高而稳定的脱氮性能。

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