Abstract
Oily wastewater is waste originating from industries primarily engaged in refining crude oil and is a very complex compound of various oily wastes, water, heavy metals and so on. Supercritical water oxidation (SCWO) is applied to treat oily wastewater. The orthogonal experiment results showed that optimal technological parameter for SCWO of oily wastewater is that reaction temperature is 430 °C, OE is 0.75, initial concentration of oily wastewater is 30000 mg/L and reaction time is 15 min. COD removal is 99%. It is concluded that SCWO is an effective process for removing organic compounds from oily wastewater.
Received: 2013-2-2
Revised: 2014-3-13
Accepted: 2014-3-15
Published Online: 2016-11-30
Published in Print: 2014-7-1
© 2016 by Walter de Gruyter Berlin/Boston
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Keywords for this article
Oily wastewater;
SCWO;
Advanced Oxidation Process;
COD removal
Articles in the same Issue
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- The Photocatalytic Conversion of (Biodiesel Derived) Glycerol to Hydrogen - A Short Review and Preliminary Experimental Results Part 2: Photocatalytic Conversion of Glycerol to Hydrogen in Batch and Semi-batch Laboratory Reactors
- Photo-fenton Oxidation of t-Butyl methyl ether in Presence of LaFeO3 Supported on Monolithic Structure
- Functionalization of Ceramic Tiles with N-doped TiO2 and Their Photocatalytic Function Under UV or Visible Light Irradiation
- Mechanism of Synergistic Photocatalytic Cr(VI)-reduction and Benzoic Acid Oxidatiοn by Visible Light Active TiO2 Photocatalysts
- Baeyer-Viiliger Oxidation of Cyclic Ketones Using Aqueous Hydrogen Peroxide Catalyzed by Heteropolyacids in Solvent-free System
- Progresses of Fundamental Research and Application of Atmospheric Pressure Townsend Discharge
- Synthesis, Characterization and Study of the Photocatalytic Activity of the Ti/Fe Mixed Oxide
- Improvement of Stability for NO Removal in Multipoint Barrier Discharge Reactor by Pulse Applied Voltage
- Preservation of Fresh Food Using AC Electric Field
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- Non-thermal Plasma Technology for Methylene Blue Decolorization in Continuous and Circulating System: Kinetic Model and Reactor Performance
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