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When a combination of PHB and the isolated bacterial culture was added to spent wash, a maximum color removal of 92.77% was found which was comparatively higher than the color removed when the spent wash was treated individually with the PHB and Pseudomonas aeruginosa.
Maximum color removal efficiency was predicted and experimentally validated.
The maximum color removal in these conditions was predicted 82.78% by the RSM model.
Maximum color removal efficiency was achieved at the obtained conditions of: pH = 4, concentration of electrolyte = 3.5 g/L and current density = 19 mA/cm2.
In optimum conditions, maximum color removal efficiency (93.2%) was obtained after 16 min; and the removal of chemical oxygen demand (COD) was reduced to 57.1% after 60 min.
With the mass ratio of 1/10 (w/w) between the flocculant and dye, and at pH 4 and 20 °C of the initial dye solution, the maximum color removal reached.
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The effect of operating parameters in estimating the maximum % color removal, % TOC removal and minimum of power consumption with respect to each variable and the impact of each operating parameter on the output are discussed as following.
The results showed that, the maximum % color removal, % TOC removal and minimum of power consumption were 74.57, 51.75 and 14.80 kWh/m3, respectively, obtained at the optimum conditions of current density (X1) of 5.25 A/dm2, inter-electrode distance (X2) of 1 cm and initial effluent pH of 7.83.
The dosage (20 and 60 ml), pH (7 and 8.5) and concentration of 0.25 M had been found to be the optimum conditions for maximum 56%and6767% color removal using sodium chloride (NaCl) and potassium chloride (KCl) salts respectively.
Where the temperature required to the maximum rate of color removal tends to correspond with the optimum bacterial growth temperature of 30 °C (60.3%).
The maximum color and COD removals were 98 and 91 % of 50 mg L−1 BG dye at 30 min of oxidation time.
More suggestions(15)
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