## Abstract **BACKGROUND:** Under the current global energy scenario, the need for self‐sustainable processes is encouraged. The photovoltaic solar powered electrochemical oxidation (PSEO) process has been developed to remove the organic matter from a lignosulfonate wastewater. **RESULTS:** An ele
Electrochemical oxidation of tannery wastewater
✍ Scribed by N N Rao; K M Somasekhar; S N Kaul; L Szpyrkowicz
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 2001
- Tongue
- English
- Weight
- 214 KB
- Volume
- 76
- Category
- Article
- ISSN
- 0268-2575
- DOI
- 10.1002/jctb.493
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Tannery wastewater was treated by an electrochemical oxidation method using Ti/Pt, Ti/PbO~2~ and Ti/MnO~2~ anodes and a Ti cathode in a two‐electrode stirred batch reactor. The changes in colour concentration, chemical oxygen demand (COD), ammonia (NH~4~^+^), sulfide and total chromium have been determined as a function of treatment time and applied current density. Gas chromatography–mass spectrometry (GC–MS) analysis, performed on the wastewater samples before and after treatment, as well as on foam samples, is reported. Anode efficiency, rate constants and energy consumption were estimated and discussed. The efficiency of Ti/Pt was 0.802 kgCOD h^−1^ A^−1^m^−2^ and 0.270 kgNH~4~^+^ h^−1^ A^−1^m^−2^, and the energy consumption was 5.77 kWh kg^−1^ COD and 16.63 kWh kg^−1^ of NH~4~^+^. The order of efficiency of anodes was found to be Ti/Pt ≫ Ti/PbO~2~ > Ti/MnO~2~. The results indicate that the electro‐oxidation method could be used for effective oxidation of tannery wastewater and a final effluent with substantially reduced pollution load can be obtained.
© 2001 Society of Chemical Industry
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