EventsMOL2NET'22, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 8th ed.
Published
This submission belongs to the session 03. NANOBIO.MAT-08: Nanotechnology, Biomed. Eng., & Materials Science Congress, Birmingham, London, UK-Fargo, USA, 2022. of the event MOL2NET'22, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 8th ed.
Published date
30 Dec, 2022
Academic Editor
author-avatarHumbert G. Díaz
Citation
Syed Shahabuddin, Megha Parmar, Veena Sodha, Krunal Baria, Rama Gaur, New magnetic zeolite-based nanocomposites for photocatalytic, part 1: Synthesis and characterization., in Proceedings of MOL2NET'22, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 8th ed., 1 January–15 January 2023, MDPI: Basel, Switzerland, doi: 10.3390/mol2net-08-13935
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New magnetic zeolite-based nanocomposites for photocatalytic, part 1: Synthesis and characterization.

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1. Department of Chemistry, School of Energy Technology, Pandit Deendayal Energy University, Knowledge Corridor, Raisan, Gandhinagar,382426, Gujarat India, India
2. Department of Chemistry, School of Energy Technology, Pandit Deendayal Energy University, Knowledge Corridor, Raisan, Gandhinagar,382426, Gujarat India
Abstract

Photocatalysis is considered to be the most efficient treatment as compared to the other methods and is suitable for highly cost-sensitive and energy-restrictive applications. In this research, first, we synthesized magnetic nanoparticles and reported their applications. We are going to publish it in to related communications (part 1 and part 2). In part 1, we synthesized magnetic nanoparticles of Fe3O4 and the versatile ZSM-5/Fe3O4 magnetic nanocomposite for the photocatalytic treatment of wastewater. This paper specifically reports the varying ratios of ZSM-5 and Fe3O4 in the nanocomposites that are 1:1, 1:2 and 1:0.5 and as the concentration of Fe3O4 varied, the properties of the nanocomposite changed as well. Further, these nanocomposites are characterized by X-ray diffraction (XRD), Fourier-transform infrared (FTIR), and several advanced spectroscopy techniques.

In addition to this, in a second communication (part 2), a comparison study is done between the three nanocomposites to study their magnetic behavior and photocatalytic efficiency to treat wastewater. Since these materials are magnetic in nature, therefore, after photocatalysis the material can be easily removed with the help of external magnets. Our approach provides an efficient and comparable synthesis process having photocatalytic applications in treating wastewater.

Keywords
Zeolite
photocatalysis
waste water treatment
nanoparticles
magnetic
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