Combined biological contact oxidation pool process to treat black-odor waterbodies

IF 3.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Xin Li, Yongbing Huang, Yifan Shi, Geli Cheng and Zieryeke Niyaziihan
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Abstract

A black-odor river water quality improvement project was conducted in Jiangmen City, Guangdong Province, China. A combination of sewage interception and source control, aeration and oxygenation, a biological contact oxidation tank, and the construction of aquatic ecosystems was used. To manage the irregular discharge of domestic sewage and high ammonia nitrogen content of the river, the traditional biological contact oxidation process was improved. A biological contact oxidation tank was constructed. High-efficiency ammonia nitrogen bacteriological agents were injected into the river for the management of river sewage. After four months of operation, this innovative process was stable and efficient with respect to the degradation of river pollutants. The transparency and dissolved oxygen content increased from 8.8 to 69.5 cm and 1.5 to 6.4 mg L−1, respectively. The ammonia nitrogen, total phosphorus, and dichromate oxidizability concentrations decreased from 6.4 to 1.6, 0.67 to 0.30, and 101 to 31.7 mg L−1, respectively. The black odor was removed from the river and the water quality indicators met the class V surface water standards after the project was completed. The new methodology is effective with respect to the management of black-odor waterbodies. The results of this study provide a reference for the treatment of black-odor rivers in cities.

Abstract Image

Abstract Image

处理黑臭水体的生物接触氧化池组合工艺
中国广东省江门市开展了黑臭河涌水质改善项目。工程采用截污控源、曝气增氧、生物接触氧化池和水生生态系统建设相结合的方法。为治理生活污水不定时排放和河道氨氮含量高的问题,对传统的生物接触氧化工艺进行了改进。建造了生物接触氧化池。向河道注入高效氨氮菌剂,用于治理河道污水。经过四个月的运行,这一创新工艺对河流污染物的降解效果稳定高效。透明度和溶解氧含量分别从 8.8 厘米和 1.5 毫克/升增加到 69.5 厘米和 6.4 毫克/升。氨氮、总磷和重铬酸盐氧化性浓度分别从 6.4 毫克/升降至 1.6 毫克/升、0.67 毫克/升降至 0.30 毫克/升、101 毫克/升降至 31.7 毫克/升。项目完成后,河道黑臭现象消除,水质指标达到地表水 V 类标准。新方法在黑臭水体治理方面效果显著。该研究结果为城市黑臭河道治理提供了参考。
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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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