Extraction of silica from fly-ash and fabrication of silica-clay composite for dye removal and kinetic studies
Author:
Ali Zahid12, Nazir Rabia3, Saleem Sumaira1, Nazir Arif1, Alfryyan Nada4, Alwadai Norah4, Iqbal Munawar5
Affiliation:
1. Department of Chemistry , The University of Lahore , Lahore , Pakistan 2. State Key Laboratory of Organic–Inorganic Composites , Beijing University of Chemical Technology , Beijing 100029 , P. R. China 3. Analytical Chemistry Research Centre , Pakistan Council of Scientific and Industrial Research , Lahore , Pakistan 4. Department of Physics, College of Sciences , Princess Nourah bint Abdulrahman University , P.O. Box 84428 , Riyadh 11671 , Saudi Arabia 5. Department of Chemistry , Division of Science and Technology, University of Education , Lahore , Pakistan
Abstract
Abstract
A facile and green approach to extract silica from the coal fly-ash waste is extremely critical for environmental sustainability and economically suitable. In this study, we have used acid-alkali coupled approach to improvised the proficiency of the extraction process. The sodium hydroxide (NaOH) soaking results the formation of the sodium silicate (Na2SiO3) solution then pure silica was obtained by heating at high temperature; this coupled route-way results better yield of silica (SiO2) which is ∼ 40 g. The efficiency of pure silica is not enough to remove toxic effluents from the aqueous media. A highly versatile approach of composite formation was adopted to fabricate silica-clay composite using kaolinite-clay and extracted silica. Both materials, extracted silica and its silica-clay composite were analyzed using scanning electron microscopy (SEM), energy dispersive X-ray (EDX) method, X-ray diffraction technique (XRD) and Fourier transform infra-red spectroscopy (FTIR). The silica-clay composite showed plate-tubular like morphology with enormous binding sites available for the sorption pollutants like organic dyes. It has shown excellent sorption of methylene blue (MB) efficiency of 131.5 mg/g, while silica furnished the sorption of 70.5 mg/g. Results revealed that the synthesized material could probably have better potential for dye removal from industrial effluents.
Funder
Princess Nourah bint Abdulrahman University
Publisher
Walter de Gruyter GmbH
Subject
Physical and Theoretical Chemistry
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