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低温条件下电解强化人工湿地对模拟低污染水的净化效果研究
Study on Purification Effect of Simulated Low Pollution Water by Electrolysis-Enhanced Constructed Wetland under Low Temperature Conditions

DOI: 10.12677/AEP.2021.115113, PP. 938-945

Keywords: 电解强化人工湿地,磺胺甲恶唑,低温,硝氮,正磷酸盐
Electrolysis Enhanced Constructed Wetland
, Sulfamethoxazole, Low Temperature, Nitrate Nitrogen, Orthophosphate

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Abstract:

本研究采用电解强化的人工湿地技术,在低温情况下开展低污染水净化机制研究。通过低温条件的设置、电解强化人工湿地HRT等参数的优化、模拟进水浓度配制优化等构建出人工湿地小试装置,在植物–微生物–电化学联合处理低污染水硝氮、正磷酸盐、磺胺甲恶唑的作用机制下,达到低温条件下电解强化人工湿地对磺胺甲恶唑的稳定净化效果。经研究表明:在电解强化电解人工湿地处理下,低污染水中的各类污染物的处理效果都达到较好处理效果,也实现了低温下对低污染水中污染物的去除,且去除效果达到较高水平。
In this study, electrolytic enhanced constructed wetland technology is proposed, and the purifica-tion mechanism of low pollution water is studied at low temperature. Through the setting of low- temperature conditions, the optimization of HRT parameters of electrolytic enhanced constructed wetland and the optimization of simulated influent concentration, a small-scale constructed wet-land test device is constructed. Under the action mechanism of plant microorganism electrochem-ical combined treatment of low pollution water nitrate nitrogen, orthophosphate and sulfametho- xazole, the stable purification effect of electrolytic enhanced constructed wetland on sulfametho- xazole under low-temperature conditions is achieved. The research shows that under the treatment of electrolytic enhanced electrolytic constructed wetland, the treatment effect of various pollutants in low pollution water reaches a good treatment effect, and the removal of pollutants in low pollution water at low temperature is also realized, and the removal effect reaches a high level.

References

[1]  郑晓英, 朱星, 王菊, 等. 内电解人工湿地冬季低温尾水强化脱氮机制[J]. 环境科学, 2018(2): 758-764.
[2]  童宁, 邓风. 强化低温域人工湿地脱氮除磷进展研究[J]. 工业安全与环保, 2013, 39(9): 29-31.
[3]  何媛, 王宇晖, 宋新山. 电极强化人工湿地处理污水脱氮的效果[J]. 环境工程学报, 2016, 10(9): 4867-4872.
[4]  王宇娜, 国晓春, 卢少勇, 等. 人工湿地对低污染水中氮去除的研究进展: 效果、机制和影响因素[J]. 农业资源与环境学报, 2021, 38(5): 722-734.
[5]  张凡, 薛罡, 等. 不同离子对铁铜双金属微电解处理磺胺甲恶唑的影响[J]. 水处理技术, 2016, 42(7): 17-20.
[6]  张建, 邵文生, 等. 潜流人工湿地处理污染河水冬季运行及升温强化处理研究[J]. 环境科学, 2006, 27(8): 1560-1564.
[7]  孙娟. 中国微污染水源水处理技术研究现状与进展[J]. 资源节约与环保, 2015(10): 29.
[8]  周卿伟. 人工湿地强化技术及其效能研究[D]: [博士学位论文]. 北京: 中国科学院大学, 2017.
[9]  商侃侃, 张国威, 万吉尔. 潜流人工湿地处理低污染水对植物生长的影响[J]. 净水技术, 2018, 37(9): 120-125+131.
[10]  潘傲. 人工湿地对低污染水体净化效果和基质微生物群落多样性研究[D]: [硕士学位论文]. 重庆: 重庆大学, 2019.

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