Decomposition of pollutants from domestic sewage with the combination systems of hydrolytic acidification coupling with constructed wetland microbial fuel cell

人工湿地 污染物 水解 化学 环境化学 化学需氧量 污水 微生物燃料电池 分解 污水处理 硝酸盐 溶解有机碳 氮气 环境科学 制浆造纸工业 环境工程 有机化学 电极 物理化学 阳极 工程类
作者
Jinlong Han,Zhinian Yang,Hao Wang,Huiyuan Zhong,Duo Xu,Yu Shuang,Lei Gao
出处
期刊:Journal of Cleaner Production [Elsevier BV]
卷期号:319: 128650-128650 被引量:28
标识
DOI:10.1016/j.jclepro.2021.128650
摘要

In this research, three highly efficient combination systems, including constructed wetland microbial fuel cell (CWMFC), hydrolytic sludge acidification coupling with constructed wetland microbial fuel cell (HSA-CWMFC) and hydrolytic filler acidification coupling with constructed wetland microbial fuel cell (HFA-CWMFC), were applied to the removal of pollutants from domestic sewage. The three combination systems could effectively treat domestic sewage and generate clean energy. The power generated by CWMFC, HSA-CWMFC, and HFA-CWMFC was 0.36 W/m 2 , 0.40 W/m 2 , and 0.43 W/m 2 , respectively. The results indicated that the removal rates of chemical oxygen demand (COD), total organic carbon (TOC), total phosphorus (TP), ammonia nitrogen (NH 3 –N), and nitrate nitrogen (NO 3 − -N) in HFA-CWMFC could achieve the optimal values of 91.01%, 90.63%, 95.35%, 86.11%, and 91.01%, respectively. In addition, HFA-CWMFC produced more organic acids than HSA-CWMFC, which was beneficial to the follow-up reaction. Through qualcomm sequencing analysis, it could be seen that Firmicutes , which could enhance power generation capacity and increase removal rates of pollutants, played an important role in HFA-CWMFC. The results demonstrated that the three combined systems had excellent application prospects for sewage treatment and energy generation. ● The hydrolytic combination systems had remarkable effect on pollutants removal. ● The hydrolytic filler combination system could obviously remove pollutants. ● Microbial community in the hydrolytic filler combination system was more abundant.
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