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Is A/A/O process effective in toxicity removal? Case study with coking wastewater.

Authors :
Shi, Liu
Wang, Dong
Cao, Di
Na, Chunhong
Quan, Xie
Zhang, Ying
Source :
Ecotoxicology & Environmental Safety; Aug2017, Vol. 142, p363-368, 6p
Publication Year :
2017

Abstract

The anaerobic-anoxic-oxic (A/A/O) process is the commonly used biological wastewater treatment process, especially for the coking wastewater. However, limit is known about its ability in bio-toxicity removal from wastewater. In this study, we evaluated the performance of A/A/O process in bio-toxicity removal from the coking wastewater, using two test species (i.e. crustacean ( Daphnia magna ) and zebra fish ( Danio rerio )) in respect of acute toxicity, oxidative damage and genotoxicity. Our results showed that the acute toxicity of raw influent was reduced gradually along with A/A/O process and the effluent presented no acute toxicity to Daphnia magna ( D. magna ) and zebra fish. The reactive oxygen species (ROS) level in D. magna and zebra fish was promoted by the effluent from each tank of A/A/O process, showing that coking wastewater induced oxidative damage. Herein, the oxidative damage to D. magna was mitigated in the oxic tank, while the toxicity to zebra fish was reduced in the anoxic tank. The comet assays showed that genotoxicity to zebra fish was removed stepwise by A/A/O process, although the final effluent still presented genotoxicity to zebra fish. Our results indicated that the A/A/O process was efficient in acute toxicity removal, but not so effective in the removal of other toxicity (e.g. oxidative damage and genotoxicity). Considering the potential risks of wastewater discharge, further advanced toxicity mitigation technology should be applied in the conventional biological treatment process, and the toxicity index should be introduced in the regulation system of wastewater discharge. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01476513
Volume :
142
Database :
Supplemental Index
Journal :
Ecotoxicology & Environmental Safety
Publication Type :
Academic Journal
Accession number :
123134178
Full Text :
https://doi.org/10.1016/j.ecoenv.2017.04.034