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改良的 BAF 系统构建协同反硝化与化学除磷:污染物去除与堵塞发展研究。

A modified BAF system configuring synergistic denitrification and chemical phosphorus precipitation: Examination on pollutants removal and clogging development.

机构信息

Harbin Institute of Technology Shenzhen Graduate School, Shenzhen Key Laboratory of Water Resource Utilization and Environmental Pollution Control, Shenzhen 518055, PR China.

Space Science & Technology Institute of South China, Shenzhen 518100, PR China.

出版信息

Bioresour Technol. 2015;189:44-52. doi: 10.1016/j.biortech.2015.03.132. Epub 2015 Mar 30.

Abstract

The performance of a BAF system configuring simultaneous chemical phosphorus precipitation in the pre-denitrification stage was examined using a continuously operated setup to treat real domestic wastewater. The effects of using no chemical, dosing sole Fe(2+), and dosing combined Fe(2+), PAM, and NaHCO3 in the pre-denitrification tank were assessed by monitoring COD, nitrogen, and phosphorus removal and hydraulic headloss development in the BAF column. Though dosing sole Fe(2+) significantly enhanced phosphorus removal, it would consume alkalinity through hydrolysis and form smaller-sized sludge flocs in the pre-denitrification tank, and hence resulted in affected NH4(+)-N, insoluble COD, and SS removal in the BAF. Dosing combined Fe(2+), PAM, and NaHCO3 can enhance sludge flocculation to form larger flocs and compensate alkalinity consumption. It exhibited sound performance on COD, nitrogen, and phosphorus removal, and led to less frequent BAF backwashing by slowing clogging development in the BAF filter layer.

摘要

采用连续运行装置,利用实际生活污水考察了前置反硝化阶段同时进行化学除磷的曝气生物滤池系统的性能。通过监测曝气生物滤柱中的 COD、氮和磷去除以及水力水头损失的发展,评估了前置反硝化池中不投加药剂、单独投加 Fe(2+)、同时投加 Fe(2+)、PAM 和 NaHCO3 对 COD、氮和磷去除的影响。尽管单独投加 Fe(2+)可显著提高除磷效果,但它会通过水解消耗碱度,并在前置反硝化池中形成更小尺寸的污泥絮体,从而影响曝气生物滤池中的 NH4(+)-N、不溶性 COD 和 SS 的去除。同时投加 Fe(2+)、PAM 和 NaHCO3 可增强污泥絮凝,形成更大的絮体,并补偿碱度消耗。它在 COD、氮和磷去除方面表现出良好的性能,通过减缓曝气生物滤池滤层堵塞的发展,减少了曝气生物滤池的反冲洗频率。

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