污水处理厂生物脱氮的固定膜生物培养基工艺研究

Nitrogen Pub Date : 2022-09-05 DOI:10.3390/nitrogen3030034
Jesmin Akter, Jai-yeop Lee, Ildoo Kim
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引用次数: 3

摘要

本研究开发并运行了一种实验室规模的固定膜生物培养基工艺,以评估生活污水处理厂的氮去除效果。为了去除氮,固定膜生物培养基工艺与厌氧、缺氧和好氧单元串联在三个独立的反应器中,以相同的加载速率和水力停留时间连续运行。开发了一种用于生活污水现场处理的生物膜分离生物反应器,该生物反应器采用合成纤维模块,使生物质完全附着在培养基上。本文对平均流速下的固定膜生物培养基工艺在处理系统稳定前后的脱氮性能进行了评价。结果表明,固定膜生物培养基工艺对二、三级处理废水的脱氮效果较好,总氮排放量减少77%。在三次处理的污水中,可以实现快速硝化,并在缺氧过滤器中进行反硝化。在稳定过程结束后进行曝气,实现硝化和反硝化反应脱氮。然而,稳定的曝气供应可以在中等温度下增强硝化作用,这得益于生物培养基分离使硝化细菌在系统内完全保留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fixed-Film Bio-Media Process Used for Biological Nitrogen Removal from Sewage Treatment Plant
In this study, a lab-scale fixed-film bio-media process was developed and operated to evaluate nitrogen removal from domestic sewage treatment plants. For nitrogen removal, the fixed-film bio-media process was applied in series with anaerobic, anoxic, and aerobic units in three separate reactors that were operated continuously at the same loading rates and hydraulic retention time. A biofilm separation bioreactor was developed for on-site domestic wastewater treatment and the bioreactor employed synthetic fiber modules so that the biomass could be completely attached to the media. In this paper, the performance of the fixed-film bio-media process with an average flow rate was evaluated before and after stabilization of the treatment system for nitrogen removal. The results show that the fixed-film bio-media process was successful for improved nitrogen removal from secondary and tertiary treated wastewater, with a 77% decrease in the total nitrogen discharge. Rapid nitrification could be achieved, and denitrification was performed in the anoxic filter with external carbon supplements during tertiary treated sewage wastewater. However, aeration was supplied after the stabilization process to achieve the nitrification and denitrification reaction for nitrogen removal. However, stable aeration supply could enhance nitrification at moderate temperature with benefits from complete retention of nitrifying bacteria within the system due to bio-media separation.
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