废活性污泥分解法(NO2/FNA 法)作为污水处理厂主流脱氮的碳源

Dorota Szypulska, K. Janiak, B. Zięba, Anna Wizimirska, M. Mołczan, Sławomir Szerzyna, Renata Tomczak-Wandzel
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引用次数: 0

摘要

在废水脱氮过程中,缺乏易于生物降解的有机碳会严重影响脱氮效果。废活性污泥(WAS)是污水处理厂(WWTP)直接产生的碳源。未处理的废活性污泥分子量大、化学结构复杂,不易被微生物利用。在这项研究中,利用 pH 值控制和/或亚硝酸盐和硝酸(NO2/FNA)释放出易生物降解的有机组分。研究结果表明,在污水处理厂中,废水可作为反硝化的充足碳源,因为这些污水处理厂存在轻微的污水违规风险。在使用 pH 值控制和 NO2/FNA 的情况下进行 WAS 分解,可使反硝化量增加 0.5 和 0.8 mgN-NO3/L。废水分解除了可以产生碳之外,还可以减少污泥量,从而实现闭环系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disintegrated Waste-Activated Sludge (NO2/FNA Method) as a Source of Carbon for Denitrification in the Mainstream of a WWTP
The deficiency of readily biodegradable organic carbon can be a significant limitation to effective nitrogen removal during wastewater denitrification. Waste-activated sludge (WAS) is a source of carbon produced directly at wastewater treatment plants (WWTPs). Raw WAS has a large molecular weight and complex chemical structure molecules that are not easily available for microorganisms. In this study, easily biodegradable organic fractions were released using pH control and/or nitrites and nitric acid (NO2/FNA). The obtained results indicated that WAS can be a sufficient carbon source for denitrification in WWTPs that are at risk of minor effluent violations. The implementation of WAS disintegration with the use of pH control and NO2/FNA allowed for the denitrification of an additional 0.5 and 0.8 mgN-NO3/L. WAS disintegration, besides being a source of carbon generation, reduces the volume of sludge and leads to the implementation of a closed-loop system.
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