Literature DB >> 27457057

Simultaneous degradation of refractory organic pesticide and bioelectricity generation in a soil microbial fuel cell with different conditions.

Xian Cao1, Chunyan Yu1, Hui Wang1, Fang Zhou1, Xianning Li1.   

Abstract

In this study, the soil microbial fuel cells (MFCs) were constructed based on sandy soil to remove the refractory organic pesticide hexachlorobenzene (HCB) in topsoil by a simple method. The construction of membraneless single-chamber soil MFCs by setting up the cathode- and the anode-activated carbon, inoculating the sludge and adding the co-substrates can promote HCB removal significantly. The results showed that HCB removal efficiencies in the soils contaminated with 40, 80  and 200 mg/kg were 71.14%, 62.15% and 50.06%, respectively, which were 18.65%, 18.46% and 19.17% higher than the control, respectively. The electricity generation of soil MFCs in different HCB concentrations was analyzed. The highest power density reached was 70.8 mW/m2, and an internal resistance of approximately 960 Ω was obtained when an external resistance loading of 1000 Ω was connected. Meanwhile, the influences of temperature, substrate species and substrate concentrations on soil MFCs initial electricity production were investigated. The addition of the anionic surfactant sodium dodecyl sulfate (SDS) into the soil MFCs system contributed to the improvement in HCB removal efficiency.

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Keywords:  Microbial fuel cell; bioelectricity generation; degradation; refractory organic pesticide; soil

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Year:  2016        PMID: 27457057     DOI: 10.1080/09593330.2016.1216609

Source DB:  PubMed          Journal:  Environ Technol        ISSN: 0959-3330            Impact factor:   3.247


  1 in total

1.  Cathodic microbial community adaptation to the removal of chlorinated herbicide in soil microbial fuel cells.

Authors:  Yue Li; Xiaojing Li; Yang Sun; Xiaodong Zhao; Yongtao Li
Journal:  Environ Sci Pollut Res Int       Date:  2018-04-05       Impact factor: 4.223

  1 in total

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