Optimization of electrocoagulation process for treatment of rice grain-based biodigester distillery effluent using surface response methodology approach
Distillery industries are the most water-consuming industries discharging a large amount of wastewater that contain a high organic load. Hence it is first treated in biodigester where significant organics reduces (50–60%) and the outcome of biodigester is commonly known as biodigester effluent (BDE)...
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Veröffentlicht in: | International journal of chemical reactor engineering 2022-12, Vol.20 (12), p.1261-1273 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Distillery industries are the most water-consuming industries discharging a large amount of wastewater that contain a high organic load. Hence it is first treated in biodigester where significant organics reduces (50–60%) and the outcome of biodigester is commonly known as biodigester effluent (BDE). The present study is an attempt to treat BDE in terms of COD and color removal using a batch electrocoagulation reactor (ECR) where stainless steel (SS) is used as an electrode. To optimize the four independent parameters namely initial pH (pH
: 3.5–9.5), current density (
: 49.5–247 A/m
), electrode gap (
: 1.2–3.2 cm), and reaction time (
: 20–100 min) on the color and COD reduction efficiency, a central composite design (CCD) experiment is applied to evaluate the individual and interactive effects of these parameters. The high coefficients of determination for color (
= 0.9989) and COD (
= 0.9981) were obtained by analysis of variance (ANOVA) between the experimental data and the predicted data using a second-order regression model. At the optimum condition color and COD removal of 81.4 and 91.9%, respectively, were observed. A material balance of SS has also been incorporated. |
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ISSN: | 1542-6580 1542-6580 |
DOI: | 10.1515/ijcre-2021-0253 |