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评估一种新型反应器配置在乳制品废水处理中增强有机物和氮同步去除的潜力。

Evaluating the potential of a new reactor configuration to enhance simultaneous organic matter and nitrogen removal in dairy wastewater treatment.

作者信息

Lúcio Danilo S G, Dias Maria Eduarda S, Ribeiro Rogers, Tommaso Giovana

机构信息

Faculty of Animal Science and Food Engineering (FZEA), University of São Paulo (USP), Pirassununga, SP, Brazil.

出版信息

Environ Sci Pollut Res Int. 2023 Apr;30(20):57490-57502. doi: 10.1007/s11356-023-26341-6. Epub 2023 Mar 25.

Abstract

The dairy industry is a very productive sector worldwide and known for producing great volumes of wastewater that is rich in organic matter and nutrients. Apart from fat, the organic matter in such effluents is easily degradable, demanding an external carbon source for conventional denitrification. In this manner, new configurations of reactors promoting a suitable environment for more sustainable nitrogen removal are beyond required-they are paramount. Therefore, the performance of a structured-bed hybrid baffled reactor (SBHBR) with anaerobic and oxic/anoxic chambers was designed and assessed for treating different dairy wastewaters. A combination of baffled and biofilm-structured systems under intermittent aeration was the solution proposed to obtain a new method for nitrogen removal under low COD/TN ratios. The COD/TN ratios tested were 2.1 ± 0.6, 0.84 ± 0.5, and 0.35 ± 0.1 in the inlet of the O/A chambers for operational stages I, II, and III, respectively. The SBHBR provided COD removal efficiencies above 90% in all experimental stages. During stage III, the process had nitrification and denitrification efficiencies of 85.9 ± 17% and 85.2 ± 9%, respectively, resulting in a TN removal efficiency of 74.6 ± 14.7%. Stoichiometric calculations were used to corroborate the activity of bacteria that could perform the anammox pathways as their main mechanisms.

摘要

乳制品行业在全球范围内是一个高产的行业,以产生大量富含有机物和营养物质的废水而闻名。除脂肪外,此类废水中的有机物易于降解,传统反硝化需要外部碳源。因此,设计并评估了一种具有厌氧和好氧/缺氧室的结构化床混合折流板反应器(SBHBR)处理不同乳制品废水的性能。在间歇曝气条件下,将折流板和生物膜结构系统相结合,是提出的一种在低COD/TN比条件下实现新型脱氮方法的解决方案。在运行阶段I、II和III中,O/A室入口处测试的COD/TN比分别为2.1±0.6、0.84±0.5和0.35±0.1。SBHBR在所有实验阶段的COD去除效率均高于90%。在阶段III期间,该工艺的硝化和反硝化效率分别为85.9±17%和85.2±9%,总氮去除效率为74.6±14.7%。采用化学计量计算来证实可能以厌氧氨氧化途径作为主要机制的细菌的活性。

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