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新型电解集成潮汐流人工湿地系统中氮磷的强化去除。

Intensified nitrogen and phosphorus removal in a novel electrolysis-integrated tidal flow constructed wetland system.

机构信息

College of Water Resources & Civil Engineering, China Agricultural University, Beijing 100083, PR China.

Key Laboratory of Clean Utilization Technology for Renewable Energy in Ministry of Agriculture, College of Engineering, China Agricultural University, Beijing 100083, PR China.

出版信息

Water Res. 2014 Aug 1;59:37-45. doi: 10.1016/j.watres.2014.04.004. Epub 2014 Apr 16.

Abstract

A novel electrolysis-integrated tidal flow constructed wetland (CW) system was developed in this study. The dynamics of intensified nitrogen and phosphorus removal and that of hydrogen sulphide control were evaluated. Ammonium removal of up to 80% was achieved with an inflow concentration of 60 mg/L in wetland systems with and without electrolysis integration. Effluent nitrate concentration decreased from 2 mg/L to less than 0.5 mg/L with the decrease in current intensity from 1.5 mA/cm(2) to 0.57 mA/cm(2) in the electrolysis-integrated wetland system, thus indicating that the current intensity of electrolysis plays an important role in nitrogen transformations. Phosphorus removal was significantly enhanced, exceeding 95% in the electrolysis-integrated CW system because of the in-situ formation of a ferric iron coagulant through the electro-dissolution of a sacrificial iron anode. Moreover, the electrolyzed wetland system effectively inhibits sulphide accumulation as a result of a sulphide precipitation coupled with ferrous-iron electro-dissolution and/or an inhibition of bacterial sulphate reduction under increased aerobic conditions.

摘要

本研究开发了一种新型电解集成潮汐流人工湿地(CW)系统。评估了强化氮磷去除动力学和硫化氢控制动力学。在有无电解集成的湿地系统中,进水浓度为 60mg/L 时,氨氮去除率可达 80%。在电解集成湿地系统中,随着电流强度从 1.5mA/cm(2)降低至 0.57mA/cm(2),出水中硝酸盐浓度从 2mg/L 降低至低于 0.5mg/L,表明电流强度在氮转化中起着重要作用。由于牺牲铁阳极的电溶解原位形成了铁的凝结剂,因此磷的去除得到了显著增强,在电解集成 CW 系统中超过 95%。此外,由于在增加的好氧条件下硫沉淀与亚铁电溶解和/或抑制细菌硫酸盐还原的耦合,电解湿地系统有效地抑制了硫化物的积累。

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