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藻类和活性污泥协同处理氨氮废水:藻类和污泥接种率的影响。

Symbiotic treatment of ammonia-nitrogen wastewater by algae and activated sludge: effects of algae and sludge inoculation rates.

机构信息

School of Resources, Environment and Materials Guangxi University, Nanning, the People's Republic of China.

School of Materials and Environment, Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Guangxi University for Nationalities, Nanning, the People's Republic of China.

出版信息

Environ Technol. 2023 Aug;44(18):2807-2817. doi: 10.1080/09593330.2022.2044919. Epub 2022 Mar 3.

Abstract

A symbiotic microalgal-bacterial system may be an optional technology for wastewater treatment. It was composed of microalgae and activated sludge and established in the SBR to explore the effect of different dosing ratios of algae and sludge on the removal of nitrogen and phosphorus from simulated wastewater containing ammonium. It can be seen from the result that varied algae-sludge dosing ratios had a higher removal effect on COD removal, but the difference was not significant. The algal-bacterial symbiosis system had a 100% removal rate for ammonium removal on the 8th day. Relatively speaking, the removal of nutrients and related mechanisms vary with environmental conditions (inoculation rate). In general, when the additive ratio was 5:1 (algae: AS), the removal rate of TN and TP was the highest, reaching 53.85% and 85.13% in the shortest time (14 days), among them, the removal rate of ammonium and COD was 100%, and the reduction rates of Nitrite nitrogen and Nitrate nitrogen were 362.99% and 73.42%, respectively. In addition, 16S rDNA gene analysis results demonstrated that the microbial community in the reactor with algal sludge inoculation ratio of 5:1 had differences in three stages of the initial reaction, the middle reaction and the end of the reaction. , , , , were enriched during the reaction operation.

摘要

一种共生微藻-细菌系统可能是一种废水处理的可选技术。它由微藻和活性污泥组成,并在 SBR 中建立,以探索不同的藻泥投加比例对含氨模拟废水中氮磷去除的影响。结果表明,不同的藻泥投加比例对 COD 去除有较高的去除效果,但差异不显著。藻菌共生系统在第 8 天对铵的去除率达到 100%。相对而言,营养物质的去除和相关机制随环境条件(接种率)而变化。一般来说,当添加剂比例为 5:1(藻:AS)时,TN 和 TP 的去除率最高,在最短的时间(14 天)内达到 53.85%和 85.13%,其中铵和 COD 的去除率为 100%,亚硝酸盐氮和硝酸盐氮的去除率分别为 362.99%和 73.42%。此外,16S rDNA 基因分析结果表明,在藻类污泥接种比例为 5:1 的反应器中,在反应的初始阶段、中间阶段和反应末期,微生物群落存在差异。在反应过程中, 、 、 、 等得到了富集。

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