Master'sOpen Access

Investigation of color removal from synthetic textile wastewater with nano material addition to activated sludge systems

2022
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Advisor: Doç. Dr. Behzat Balcı

Abstract (EN)

In the present study the potential of using Magnetite/Activated Sludge (M/AS) process as a novel adsorption/biosorption hybrid system was investigated for the removal of Reactive RED 195 (RR195) from simulated textile. The characterization of the Magnetite was carried out by Scanning Electron Microscopy (SEM), Energy-Dispersive X-ray (EDX), X-ray Diffraction (XRD) and Fourier Transmission Infrared (FTIR) and Specific Surface Area analyzes. RR195 removal studies were performed with Magnetite and M/AS hybrid process separately. The adsorption mechanism of the RR195 onto magnetite was explained by Freundlich isotherm model (R2= 0.999). The maximum experimental adsorption capacity of magnetite for RR195 was calculated 65.28 mg/g. Different concentrations of mixed liquor suspended solids (MLSS) and the magnetite dosages were used simultaneously in M/AS hybrid process. The experiments showed that the RR195 removal efficiencies increased with increasing MLSS concentrations and the magnetite dosages. 4000 mg/L was determined as optimum MLSS concentration for the removal of the RR195 from simulated textile wastewater by M/AS hybrid process. While the RR195 removal efficiency was 76.10% by 4000 mg/L MLSS in 90 minutes, the efficiency increased to 99.5% with the addition of 0.5 gram magnetite to the activated sludge process. Chemical Oxygen Demand removal efficiency was determined as 94.32% by 1.0 g magnetite/4000 mg/L MLSS hybrid process. The magnetite particles can be easily separated from simulated textile wastewater after M/AS hybrid process treatment by applying magnetic field.

Author

Berika Ergan

How to Cite

Berika Ergan (Master Thesis). Investigation of color removal from synthetic textile wastewater with nano material addition to activated sludge systems, 2022, Çukurova University.

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