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关于污泥活性炭对污水处理中活性污泥工艺强化效果的研究。

A research on the strengthening effect of sludge charcoal on activated sludge process in sewage treatment.

机构信息

School of Civil Engineering, Southeast University, Nanjing, 211189, China.

出版信息

Environ Sci Pollut Res Int. 2024 Jan;31(4):5289-5303. doi: 10.1007/s11356-023-31213-0. Epub 2023 Dec 19.

Abstract

With the rapid development of urbanization, the number of urban sewage treatment plants is increasing, wastewater treatment volume is gradually becoming large, and correspondingly, the sludge production capacity has a rapid growth. As a new method of sludge disposal, sludge carbonization is characterized by low energy consumption, simple products, and wide resource utilization prospects, which is of great help to solve problems of current sludge disposal in China. The residual sludge from sewage plant was used as raw material in this study in order to investigate the physical and chemical properties of sludge charcoal after high temperature carbonization and explore the enhancement in the removal of pollutants including COD, NH-N, TN, and TP during sewage treatment with the used sludge charcoal. The results show that the optimal dosing amount of sludge charcoal was 2 g.L when it was added into SBR equipment at one time, while the optimal dosing amount is 0.06 g.L when it was added into SBR equipment with each influent process. The enhanced removal effect of pollutants in sewage treatment process mainly depended on the physical adsorption and intensified bio-degradation of sludge charcoal, and activated sludge and sludge charcoal were synergistic in water treatment. The removal effect of pollutants is strengthened in the physical adsorption-bio-degradation-sludge charcoal reproduction-re-adsorption system. These suggested that sludge charcoal could be promising for the enhancement of pollutant removal in sewage through activated sludge process.

摘要

随着城市化进程的快速发展,城市污水处理厂的数量不断增加,污水处理量逐渐增大,相应地,污泥产生量也迅速增长。污泥碳化作为一种新的污泥处置方法,具有能耗低、产品简单、资源利用前景广泛等特点,对解决我国当前污泥处置问题具有重要意义。本研究以污水处理厂剩余污泥为原料,考察了高温碳化后污泥炭的理化性质,并探讨了利用污泥炭增强污水处理过程中 COD、NH3-N、TN 和 TP 等污染物去除的效果。结果表明,一次性向 SBR 设备中投加 2 g·L-1的污泥炭为最佳投加量,而每次进水过程中投加 0.06 g·L-1的污泥炭为最佳投加量。污水处理过程中污染物去除效果的增强主要依赖于污泥炭的物理吸附和强化生物降解作用,且活性污泥与污泥炭在水处理过程中具有协同作用。在物理吸附-生物降解-污泥炭再生-再吸附系统中,污染物的去除效果得到强化。这些结果表明,污泥炭通过活性污泥法有望增强污水处理过程中污染物的去除。

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