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曝气和非曝气周期(AE/NA)时间:对有机物和氮去除的联合影响及生物膜特性。

Aeration and non-aeration cycles (AE/NA) time: influence in combined organic matter and nitrogen removal and features of biofilm.

机构信息

Department of Civil Construction, State University of Londrina, Londrina, Brazil.

Department of Environmental Engineering, Federal Technological University of Paraná, Londrina, Brazil.

出版信息

Environ Technol. 2022 Jun;43(16):2443-2456. doi: 10.1080/09593330.2021.1882583. Epub 2021 Feb 11.

Abstract

This research aimed the performance evaluation of a structured bed reactor with different cycles of Intermittent Aeration (IA)(SBRRIA) in the municipal sewage treatment and the verification of the effect of IA cycles on the total nitrogen (TN) removal and organic matter (COD). Three IA cycles were evaluated: phase I (4 h AE (aeration on) - 2 h NA (aeration off)); II (2 h AE-1 h NA) and III (2 h AE-2 h NA), with Hydraulic Retention Time of 16 h. The best nitrogen removal was obtained during phase II, with the lowest non-aeration time: efficiency of nitrification, denitrification, TN and COD removal of 80 ± 15%, 82 ± 12%, 67 ± 6% and 94 ± 7%, respectively. The mean cell residence time was 19, 26 and 33 d in phases I, II and III, respectively. The statistical analysis applied to the AE/NA profiles showed that the time of AE and NA in the cycles did not influence nitrogen and organic matter removal. Thus, this indicates the recirculation and the gradient formed in the support material facilitate the process of Simultaneous Nitrification and Denitrification. The lowest concentration of nitrifying and denitrifying microorganisms was obtained in effluent and sludge at the end of phase III. From the TP (Total Proteins)/TPS (Total Polysaccharides) ratio obtained (0.8 ± 0.1, 1.3 ± 0.1 e 1.5 ± 0.1 in phases I, II and III), it was possible to conclude that the biofilm in phase I was more porous, with a thin layer if compared to that in phase II and III.

摘要

本研究旨在评估不同间歇曝气(IA)循环的结构化床反应器(SBRRIA)在城市污水处理中的性能,并验证 IA 循环对总氮(TN)去除和有机物(COD)的影响。评估了三个 IA 循环:I 期(4 h AE(曝气)-2 h NA(非曝气));II(2 h AE-1 h NA)和 III(2 h AE-2 h NA),水力停留时间为 16 h。在 II 期获得了最佳的氮去除效果,非曝气时间最短:硝化效率、反硝化效率、TN 和 COD 去除率分别为 80±15%、82±12%、67±6%和 94±7%。在 I、II 和 III 期,平均细胞停留时间分别为 19、26 和 33 d。对 AE/NA 曲线的统计分析表明,循环中 AE 和 NA 的时间并不影响氮和有机物的去除。因此,这表明回流和支撑材料中形成的梯度有利于同时硝化反硝化过程。在 III 期结束时,在出水中和污泥中获得了最低浓度的硝化和反硝化微生物。从获得的总蛋白(TP)/总多糖(TPS)比值(I、II 和 III 期分别为 0.8±0.1、1.3±0.1 和 1.5±0.1)可以得出结论,与 II 期和 III 期相比,I 期的生物膜更具多孔性,且具有较薄的外层。

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