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强化生物废水处理辅以初沉污泥厌氧发酵液。

Enhanced biological wastewater treatment supplemented with anaerobic fermentation liquid of primary sludge.

机构信息

Key laboratory of the Three Gorges Reservoir Region's Eco-environment, Ministry of Education, College of Environment and Ecology, Chongqing University, Chongqing 400045, PR China.

Key laboratory of the Three Gorges Reservoir Region's Eco-environment, Ministry of Education, College of Environment and Ecology, Chongqing University, Chongqing 400045, PR China.

出版信息

J Environ Manage. 2023 Dec 1;347:119086. doi: 10.1016/j.jenvman.2023.119086. Epub 2023 Oct 4.

Abstract

The wastewater treatment performance in an inverted A/O reactor supplemented with fermentation liquid of primary sludge was explored comparing to commercial carbon sources sodium acetate and glucose. Similar COD removal rate was observed with the effluent COD stably reaching the discharge standard for those 3 carbon sources. However, the fermentation liquid distributed more carbon source in the anaerobic zone. Fermentation liquid and sodium acetate tests achieved better nitrogen removal rate than glucose test. The fermentation liquid test showed the best biological phosphorus removal performance with the effluent phosphorus barely reaching the discharge standard. The microbial community characterization revealed that the fermentation liquid test was dominated by phylum Proteobacter in all the anoxic, anaerobic and aerobic zones. Denitrifying phosphorus accumulating organisms (PAOs) (i.e., genera Dechloromonas and unclassified_f__Rhodocyclaceae) were selectively enriched with high abundances (over 20%), which resulted in improved phosphorus removal efficiency. Moreover, the predicted abundances of enzymes involved in nitrogen and phosphorus removal were also enhanced by the fermentation liquid.

摘要

考察了在倒置 A/O 反应器中添加初沉污泥发酵液与商业碳源乙酸钠和葡萄糖相比的废水处理性能。对于这 3 种碳源,出水 COD 稳定达到排放标准,COD 去除率相似。然而,发酵液在厌氧区分配了更多的碳源。发酵液和乙酸钠试验的脱氮率优于葡萄糖试验。发酵液试验表现出最好的生物除磷性能,出水磷几乎达到排放标准。微生物群落特征表明,发酵液试验在所有缺氧、厌氧和好氧区都以门变形菌为主。反硝化除磷菌(PAOs)(即属脱氯菌属和未分类的_Rhodocyclaceae 科)被选择性地高度富集(超过 20%),从而提高了除磷效率。此外,发酵液还增强了参与氮磷去除的酶的预测丰度。

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