Advanced electrochemical treatment of real biotreated petrochemical wastewater by boron doped diamond anode - performance, kinetics, and degradation mechanism
At a Glance
Section titled āAt a Glanceā| Metadata | Details |
|---|---|
| Publication Date | 2020-08-13 |
| Journal | Water Science & Technology |
| Authors | Hao Li, Xinmou Kuang, Congping Qiu, Xiaolan Shen, Botao Zhang |
| Institutions | Ningbo Polytechnic, Chinese Academy of Sciences |
| Citations | 12 |
Abstract
Section titled āAbstractāAbstract Petrochemical wastewater is difficult to process because of various types of pollutants with high toxicity. With the improvement in the national discharge standard, traditional biochemical treatment methods may not meet the standards and further advanced treatment techniques would be required. In this study, electrochemical oxidation with boron doped diamond (BDD) anode as post-treatment was carried out for the treatment of real biotreated petrochemical wastewater. The effects of current density, pH value, agitation rate, and anode materials on chemical oxygen demand (COD) removal and current efficiency were studied. The results revealed the appropriate conditions to be a current density of 10 mAĀ·cmā2, a pH value of 3, and an agitation rate of 400 rpm. Moreover, as compared with the graphite electrode, the BDD electrode had a higher oxidation efficiency and COD removal efficiency. Furthermore, GC-MS was used to analyze the final degradation products, in which ammonium chloride, formic acid, acetic acid, and malonic acid were detected. Finally, the energy consumption was estimated to be 6.24 kWhĀ·mā3 with a final COD of 30.2 mgĀ·Lā1 at a current density of 10 mAĀ·cmā2 without the addition of extra substances. This study provides an alternative for the upgrading of petrochemical wastewater treatment plants.
Tech Support
Section titled āTech SupportāOriginal Source
Section titled āOriginal SourceāReferences
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