Nanostructured Iron Oxides: Structural, Optical, Magnetic, and Adsorption Characteristics for Cleaning Industrial Effluents

Author:

Rajendran Suriyaprabha1,Wanale Shivraj Gangadhar2,Gacem Amel3ORCID,Yadav Virendra Kumar4ORCID,Ahmed Inas A.5ORCID,Algethami Jari S.67ORCID,Kakodiya Shakti Devi8,Modi Timsi9ORCID,Alsuhaibani Amnah Mohammed10ORCID,Yadav Krishna Kumar11ORCID,Cavalu Simona12

Affiliation:

1. School of Nanosciences, Central University of Gujarat, Gandhinagar 302030, India

2. School of Chemical Sciences, Swami Ramanand Teerth Marathwada University, Nanded 431606, India

3. Department of Physics, Faculty of Sciences, University 20 Août 1955, Skikda 21000, Algeria

4. Department of Microbiology-Biosciences, School of Liberal Arts & Sciences, Mody University, Laxmangarh, Sikar 332311, India

5. Department of Chemistry, Faculty of Science, King Khalid University, Abha 62224, Saudi Arabia

6. Department of Chemistry, College of Science and Arts, Najran University, Najran 11001, Saudi Arabia

7. Promising Centre for Sensors and Electronic Devices (PCSED), Najran University, Najran 11001, Saudi Arabia

8. School of Bioscience, Rani Durgavati Vishwavidyalaya, Jabalpur 482001, India

9. Department of Environment Science, P P Savani University, Surat 394125, India

10. Department of Physical Sport Science, College of Education, Princess Nourah bint Abdulrahman University, Riyadh 11671, Saudi Arabia

11. Faculty of Science and Technology, Madhyanchal Professional University, Ratibad, Bhopal 462044, India

12. Faculty of Medicine and Pharmacy, University of Oradea, P-ta 1 Decembrie 10, 410087 Oradea, Romania

Abstract

Globally, efforts are being made to upgrade and improvise the current wastewater treatment technologies. Industrial wastewater is being generated exponentially, owing to the expansion in chemical industries and civilizations necessitating remediation to prevent further environmental damage and lower associated human risks. In this work, iron oxide nanoparticles (IONPs) have been developed and employed as an efficient nanocatalyst for heavy metal adsorption via the chemical route. The shape, absorbance optical, crystal phase, and magnetization of as-prepared magnetic nanostructures were characterized using XRD (X-ray diffraction), UV-Vis (ultraviolet-visible), HRTEM (High-resolution transmission electron microscopy), FTIR (Fourier transfer infrared spectroscopy), and VSM. Further, the adsorption ability of iron oxide to remove the bulk metallic elements considering cadmium (Cd), lead (Pb), zinc (Zn), chromium (Cr), copper (Cu), and nickel (Ni), present in industrial effluents, were studied. The Maghemite Fe2O3 crystal phase having an R-3c group is observed in the XRD results. An identical shape of spherical nanostructures is determined using TEM including ≈21 nm for pure Fe2O3. A removal % was studied by using ICP-OES, and showed a Cr (61.2%), Cd (98%), Cu (66%), Ni (64%), Zn (97%), and Pb (98%) removal ability. The application of such monitored nanomaterials to effluent cleaning and sewage discharge emitted via labs and petrochemical industries could be expanded.

Funder

King Khalid University

Najran University

Princess Nourah bint Abdulrahman University

University of Oradea, Romania

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

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