Influence of applied potential on treatment performance and clogging behaviour of hybrid constructed wetland-microbial electrochemical technologies

微生物燃料电池 水力停留时间 堵塞 化学需氧量 废水 微量金属 污水处理 化学 体积热力学 制浆造纸工业 电解 环境工程 环境化学 氧化还原 化学工程 生物量(生态学) 水处理 材料科学 电化学 电化学电池 呼吸计 电极电位 废物处理 工作电极 降水 废物处理 金属 电凝 还原电位 电极 环境科学 阳极
作者
Pratiksha Srivastava,Rouzbeh Abbassi,Asheesh Kumar Yadav,Vikram Garaniya,Mohsen Asadnia,Trevor Lewis,Stuart J. Khan
出处
期刊:Chemosphere [Elsevier BV]
卷期号:284: 131296-131296 被引量:54
标识
DOI:10.1016/j.chemosphere.2021.131296
摘要

A two-stage hybrid Constructed Wetland (CW) integrated with a microbial fuel cell (MFC), and microbial electrolysis cell (MEC) has been assessed for treatment performance and clogging assessment and further compared with CW. The CW-MEC was operated with applied potential to the working electrode and compared with the performance of naturally adapted redox potential of the CW-MFC system. A complex synthetic municipal wastewater was used during the study, which was composed of trace metals, organics, inorganics, and dye. The study demonstrated that providing a constant potential to the working electrode in CW-MEC has resulted in high treatment performance and reduced sludge generation. The maximum chemical oxygen demand (COD), ammonium (NH4+), and phosphate (PO43−) removal achieved during treatment by CW-MEC at 24 h hydraulic retention time was 89 ± 6%, 72 ± 6% and 93 ± 2%, respectively. ICP-MS results indicated that trace metal removals were also higher in CW-MEC than in CW alone (p < 0.05). At the end of the experiment, significant volumetric change (total volume of the microcosm) occurred in CW (1.3 L), which indicates high sludge generation, whereas it was lesser in CW-MEC (0.3 L) and in CW-MFC (0.5 L). Further, Energy Dispersive X-ray (EDX) spectroscopy results indicated low levels of metal precipitation in the CW-MEC system. Based on the Shannon diversity index, the CW-MEC was assessed to be characterised by high species richness and diversity. The observations from this study indicate that the applied potential at the working electrode has a significant impact on treatment performance and clogging behaviour of the system.
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