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The maximum percentage removal was found at pH 6 7 and temperature 37 °C.
Removal of uranyl ions increased with increasing in pH value and the maximum percentage removal was established at pH 5.0.
Maximum percentage removal of dyes was found to be 97.30% and 94.22% for DO and DB respectively.
The two examined biosorbents were found highly selective for Pb II) and the maximum percentage removal values of Pb II) from real samples, viz.
Maximum percentage removal of TPA: 89.75, 73.86; COD: 83.88, 67.63 and minimum energy consumption (kW h/kg CODremoved): 57.25, 70.84 are found at optimum operating conditions using Al and Fe electrodes respectively.
Maximum percentage removal of TPA: 56.21, 54.10; BA: 59.52, 53.84; p-TA: 45.71, 39.91, and COD: 49.91, 42.95 are achieved at optimum operating conditions by Al and Fe electrodes respectively.
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The maximum percentage dye removal was obtained as 86.97% (sorbent type = apple pulp titanium dioxide, pH = 2, initial dye concentration = 10 mg/L and contact time = 120 min).
The treatment process was optimized using Artificial Neural Network for maximum percentage dye removal and evaluated in terms of varying operational parameters, process kinetics and thermodynamics.
From the above figures, it could be concluded that maximum percentage COD removal can be obtained at acidic pH 4 with 166.5 mg l−1 H2O2 and 50 mg l−1 Fe2+ concentrations.
Maximum percentage of dyes removal was noted within 30 min in both cases of dyes.
After 9 days of operation the maximum percentage COD reduction and colour removal were found to be 71.4 and 39.6%, respectively.
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