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改性曝气生物滤池系统中通过配置铁碳微电解强化除磷和环丙沙星:污染物去除及降解机制的研究。

Enhanced phosphorus and ciprofloxacin removal in a modified BAF system by configuring Fe-C micro electrolysis: Investigation on pollutants removal and degradation mechanisms.

机构信息

Shandong Provincial Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan, 250100, China.

Shandong Provincial Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan, 250100, China.

出版信息

J Hazard Mater. 2018 Jan 15;342:705-714. doi: 10.1016/j.jhazmat.2017.09.010. Epub 2017 Sep 8.

Abstract

A modified biological aerated filter (BAF) system configured Fe-C micro electrolysis was applied to enhance phosphorus and ciprofloxacin (CIP) removal. A novel sludge ceramic and sintering ferric-carbon ceramic (SFC) were separately packed into a lab-scale BAF and Fe-C micro electrolysis reactor. The BAF and Fe-C micro electrolysis coupled system was operated about 230days. The enhancement of phosphorus and ciprofloxacin removals by Fe-C micro electrolysis, the degradation mechanisms of CIP and the variations of microbial population were investigated. The removal efficiencies of chemical oxygen demand (COD), ammonia (NH-N), total phosphorus (TP) and CIP reached about 95%, 95%, 80% and 85% in the combined process, respectively. Configuring Fe-C micro electrolysis significantly enhanced phosphorus and CIP removal, whereas had no promotion on N removal. Four main degradation pathways were proposed according to the LC-MS analysis. More than 12 degradation products were detected through the treatment of Fe-C micro electrolysis and only 3 biodegraded products with low concentration were identified in BAF effluent. The high-throughput sequencing analysis showed that the microbial community changed a lot under CIP pressure. The relative abundance of Sphingomonadaceae, Xanthomonadaceae, Bradyrhizobium, Helicobacter and Pseudomonas increased with CIP influent. This study provides a promising process in CIP wastewater treatment.

摘要

一种改良的生物曝气滤池(BAF)系统配置铁碳微电解被应用于强化除磷和环丙沙星(CIP)。新型污泥陶瓷和烧结铁碳陶瓷(SFC)分别被填充到实验室规模的 BAF 和铁碳微电解反应器中。BAF 和铁碳微电解耦合系统运行了约 230 天。研究了铁碳微电解对除磷和 CIP 的强化作用、CIP 的降解机制以及微生物种群的变化。在组合工艺中,化学需氧量(COD)、氨(NH-N)、总磷(TP)和 CIP 的去除效率分别达到约 95%、95%、80%和 85%。配置铁碳微电解显著提高了除磷和 CIP 的去除效率,而对氮的去除没有促进作用。根据 LC-MS 分析,提出了四条主要的降解途径。通过铁碳微电解处理,检测到超过 12 种降解产物,而在 BAF 出水中仅鉴定出 3 种浓度较低的生物降解产物。高通量测序分析表明,在 CIP 压力下微生物群落发生了很大变化。随着 CIP 进水,鞘氨醇单胞菌科、黄单胞菌科、慢生根瘤菌属、螺旋杆菌属和假单胞菌属的相对丰度增加。本研究为 CIP 废水处理提供了一种有前途的工艺。

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