Efficient treatment of phenolic wastewater with high salinity using a novel integrated system of magnetically immobilized cells coupling with electrodes
Biological Oxygen Demand Analysis
Salinity
0211 other engineering and technologies
02 engineering and technology
Cells, Immobilized
Sodium Chloride
Wastewater
Waste Disposal, Fluid
6. Clean water
3. Good health
Cresols
Magnetics
Biodegradation, Environmental
Phenols
Electrodes
DOI:
10.1016/j.biortech.2016.06.080
Publication Date:
2016-06-25T06:38:08Z
AUTHORS (7)
ABSTRACT
A novel integrated system in which magnetically immobilized cells coupled with a pair of stainless iron meshes-graphite plate electrodes has been designed and operated to enhance the treatment performance of phenolic wastewater under high salinity. With NaCl concentration increased, phenol, o-cresol, m-cresol, p-cresol and COD removal rates by integrated system increased significantly, which were obviously higher than the sum of removal rates by single magnetically immobilized cells and electrode reaction. This integrated system exhibited higher removal rates for all the compounds than that by single magnetically immobilized cells during six cycles for reuse, and it still performed better, even when the voltage was cut off. These results indicated that there was a coupling effect between biodegradation and electrode reaction. The investigation of phenol hydroxylase activity and cells concentration confirmed that electrode reaction played an important role in this coupling effect.
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CITATIONS (22)
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