Experimental and Computational Approaches for the Structural Study of Novel Ca-Rich Zeolites from Incense Stick Ash and Their Application for Wastewater Treatment

Author:

Yadav Virendra Kumar1ORCID,Choudhary Nisha2ORCID,Ali Daoud3,Gnanamoorthy G.4,Inwati Gajendra Kumar5ORCID,Almarzoug Mohammed HA.3ORCID,Kumar Gokhlesh6,Khan Samreen Heena2ORCID,Solanki Mitesh B.7

Affiliation:

1. Department of Microbiology, School of Sciences, P P Savani University, Surat, 394125 Gujarat, India

2. Research and Development Centre, YNC Envis Pvt. Ltd., New Delhi, 110059 Delhi, India

3. Department of Zoology, College of Science, King Saud University, P.O. Box 2455 Riyadh 11451, Saudi Arabia

4. Department of Inorganic Chemistry, University of Madras, Guindy Campus, Chennai 600025, India

5. Department of Chemistry, H.V.H.P. Institute of Post Graduate Studies and Research, S. V. Campus, Sarva Vishwavidyalaya University, Kadi, Gujarat 382715, India

6. Clinical Division of Fish Medicine, University of Veterinary Medicine Vienna, 1210 Vienna, Austria

7. Step-Up Jewels PVT. LTD. Khatodara Gate, Surat, 395002 Gujarat, India

Abstract

At present, chemical Si/Al sources are mainly used as precursor materials for the manufacturing of zeolites. Such precursor materials are quite expensive for commercial synthesis. Here, we have reported the synthesis of Ca-based zeolite from incense stick ash waste by the alkali-treatment method for the first time. Incense stick ash (ISA) was used as a precursor material for the synthesis of low Si zeolites by the alkali-treatment method. The as-synthesized zeolites were characterized by various instruments like particle size analyzer (PSA), Fourier transform infrared (FTIR), X-ray diffraction (XRD), field emission scanning electron microscope (FESEM), electron diffraction spectroscopy (EDS), transmission electron microscopy (TEM), and X-ray fluorescence (XRF). FTIR and XRD helped in the identification of the microstructure and crystalline nature of the zeolites and also confirmed the synthesis of Ca-based zeolite with two thetas at 25.7°. The microscopic analysis by FESEM and TEM exhibited that the size of synthesized Ca-rich zeolites varies from 200 to 700 nm and they are aggregated and cuboidal in shape. Additionally, structural, electronic, and density of states’ characteristics of gismondine (Ca2Al4Si4O16·9H2O) structures were evaluated by computational simulations (first principle, density functional theorem). The structural optimization of structures was carried out in the first stage under the lowest condition of total energy and forces acting on atoms for the lattice constant, as well as the available experimental and theoretical findings. The present research approach predicted the transformation of ISA waste into a value-added mineral, i.e., zeolite, which was further used for the removal of both heavy metals and alkali metals from fly ash-based wastewater using inductively coupled plasma-optical emission spectroscopy (ICP-OES).

Funder

King Saud University

Publisher

Hindawi Limited

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

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