Enhanced decontamination of pefloxacin and chlorpyrifos as organic pollutants using chitosan/diatomite composite as a multifunctional adsorbent; equilibrium studies

被引:0
|
作者
Mostafa R. Abukhadra
Sherouk M. Ibrahim
Jong Seong Khim
Ahmed A. Allam
Jamaan S. Ajarem
Saleh N. Maodaa
机构
[1] Beni-Suef University,Materials Technologies and their Applications Lab, Geology Department, Faculty of Science
[2] Beni-Suef University,Geology Department, Faculty of Science
[3] Beni-Suef University,Chemistry Department, Faculty of Science
[4] Seoul National University,School of Earth and Environmental Sciences, College of Natural Sciences
[5] Beni-Suef University,Zoology Department, Faculty of Science
[6] King Saud University,Zoology Department, College of Science
来源
Journal of Sol-Gel Science and Technology | 2021年 / 99卷
关键词
Diatomite; Chitosan; Adsorption; Pefloxacin antibiotic; Chlorpyrifos pesticide; Equilibrium;
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中图分类号
学科分类号
摘要
Chitosan/diatomite composite (CH/D) was synthesized at potential multifunctional adsorbent of enhanced uptake capacities for different species of organic water pollutants. The synthetic CH/D composite was characterized and applied in batch adsorption studies for pefloxacin (PF) as pharmaceutical residual and chlorpyrifos (CF) as pesticide residual from water. The CH/D composite is of enhanced uptake capacities for both PF (310.7 mg/g) and CF (392.2 mg/g) as compared to diatomite and chitosan and single components. The PF and CF uptake reactions follow the Langmuir model as an equilibrium model which demonstrates their adsorption in monolayer and homogenous form. The PF uptake process is of Pseudo-First order kinetic while the CF uptake process is of Pseudo-Second order kinetics. The Gaussian energies (6.74 KJ/mol (PF) and 7.76 KJ/mol (CF)) and thermodynamic parameters suggest PF and CF adsorption reactions of physical, feasible, exothermic, and spontaneous properties. The CH/D composite exhibits strong selectivity for PF and CF molecules in the existence of PO43−, SO42−, and NO3− anions and considerable selectivity for them in the coexistence of Zn2+, Cd2+, and Pb2+ metal cations. The CH/D composite is of remarkable recyclability and reused in the removal of PF and CF for five cycles with removal percentages higher than 86% and 89%, respectively.
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页码:650 / 662
页数:12
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