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Maximum removal efficiency was perceived at acidic pH value 3.
However, 63.87% of norfloxacin maximum removal efficiency was achieved mainly by sorption.
A significant quadratic model was achieved with the maximum removal efficiency of 93% within investigated intervals.
The maximum removal efficiency was estimated to be 100% when all parameters are considered simultaneously.
In optimum conditions, the maximum removal efficiency of atrazine and COD was 60.5% and 97.4%, respectively.
In ZC case, the maximum removal efficiency of Mn2 + was not improved using the RSM design.
The maximum removal efficiency of 94.2% and CO2 selectivity of 80.1% were achieved when using the CuOx/γ-Al2O3 catalyst.
Maximum removal efficiency (89%) was determined at a MLVSS and CODin of 4800 and 2000 mg/L, respectively.
Maximum removal efficiency of p-TA 60.49 p-TA 60.49D—50.76, 46.75 and E. consumption 90.25, 135.50 are achieved at optimum operating conditions for Al and Fe electrodes respectively.
The maximum removal efficiency of penicillin and chlorotetracycline reached 97.15% and 96.10% respectively due to strong hydrolysis, and sulfamethoxazole reached 90.07% by biodegradation.
Potential of using these nanoparticles for heavy metal removal was studied by using Cr VI) from aqueous solution, where a maximum removal efficiency of 93.5% was obtained.
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