Comparative study on efficiency of surface enhanced coal fly ash and raw coal fly ash for the removal of hazardous dyes in wastewater: optimization through response surface methodology†

Nadeem, Haris and Jamil, Faisal and Adnan Iqbal, Muhammad and Wen Nee, Tan and Kashif, Muhammad and Hamdy Ibrahim, Ahmad and S. Al-Rawi, Sawsan and Ullah Zia, Sami and Sohail Shoukat, Umar and Kanwal, Rimsha and Ahmad Abdulrahman, Farhan and Khalid, Sabha and Tjammal Rehman, Muhammad (2024) Comparative study on efficiency of surface enhanced coal fly ash and raw coal fly ash for the removal of hazardous dyes in wastewater: optimization through response surface methodology†. RSC Advances, 14 (31). ISSN 2046-2069

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Abstract

Crystal violet (CV) dye, because of its non-biodegradability and harmful effects, poses a significant challenge for wastewater treatment. This study addresses the efficiency of easily accessible coal fly ash (CFA)-based adsorbents such as raw coal fly ash (RCFA) and surface enhanced coal fly ash (SECFA), in removing CV dye from waste effluents. Various analytical techniques such as FTIR, XRD, SEM, TEM, BET, zeta sizer and zeta potential were employed for the characterization of the adsorbents and dye-loaded samples. BET revealed that RCFA possesses a surface area of 19.370 m2 g−1 and SECFA of 27.391 m2 g−1, exhibiting pore volumes of 0.1365 cm3 g−1 and 0.1919 cm3 g−1 respectively. Zeta-sizer and potential analysis showed the static charges of RCFA as −27.3 mV and SECFA as −28.2 mV, with average particle sizes of 346.6 and 315.3 nm, respectively. Langmuir and Freundlich adsorption isotherms were also employed for adsorption studies. Employing central composite design (CCD) of response surface methodology (RSM), the maximum CV removal was 81.52% for RCFA and 97.52% for SECFA, providing one minute contact time, 0.0125 g adsorbent dose and 10 ppm dye concentration. From the thermodynamic studies, all the negative values of ΔG° showed that all the adsorption processes of both adsorbents were spontaneous in nature.

Item Type: Article
Subjects: Q Science > Q Science (General)
Q Science > QD Chemistry
Q Science > QH Natural history > QH301 Biology
Engineering > TA Engineering (General). Civil engineering (General)
Engineering > Petroleum and mining engineering
Depositing User: ePrints deposit
Date Deposited: 26 Sep 2024 14:01
Last Modified: 26 Sep 2024 14:01
URI: http://eprints.tiu.edu.iq/id/eprint/1713

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