Proficient exclusion of pesticide using humic acid-modified magnetite nanoparticles from aqueous solution

Author:

Jangra Arti1ORCID,Kumar Jai1ORCID,Singh Devender2ORCID,Kumar Harish3ORCID,Kumar Parvin1ORCID,Kumar Suresh1ORCID,Kumar Ramesh1ORCID

Affiliation:

1. a Department of Chemistry, Kurukshetra University, Kurukshetra 136119, India

2. b Department of Chemistry, Maharshi Dayanand University, Rohtak 124001, India

3. c Department of Chemistry, School of Basic Sciences, Central University of Haryana, Mahendergarh 123029, India

Abstract

Abstract Extensive dispersal of the pesticides to shield the different types of vegetation from pests has increased the production but at the same it has resulted in an increase in environmental pollution. Consequently, it is necessary to eliminate these undesired pollutants from the environment. The current investigation offers the synthesis of humic acid-coated magnetite nanoparticles towards effective removal of the most common insecticide, imidacloprid, from aqueous solution using a batch adsorption method. These synthesized nanoparticles were characterized with the help of several analytical and spectroscopic techniques. To acquire the maximum conceivable adsorption, effects of different influencing parameters like pH of the solution, time of contact, concentration of pesticide solution, amount of adsorbent and temperature were also examined. Moreover, the kinetic studies were found to be in good agreement with a pseudo-second-order kinetic model supporting the occurrence of chemisorption phenomenon. Additionally, isotherm modeling proved that the adsorption process was in accordance with the Langmuir model of isotherm. Thermodynamic parameters depicted the endothermic and spontaneous behavior of the adsorption process. Desorption studies were also carried out to examine the reusability of these nano-adsorbents. These verdicts confirmed that the surface modified magnetite nanoparticles may be treated as proficient material for exclusion of imidacloprid from the aqueous solution.

Funder

UGC-DAE Consortium for Scientific Research, University Grants Commission

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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