Adsorption of terbutaline β-agonists from wastewater by mechano-synthesized iron oxide nanoparticles modified copper (II) isonicotinate metal-organic framework

Frequent detection of terbutaline in wastewater highlights its potential risks to human health associated in the environment. Exposure to terbutaline through contaminated water sources or food chain have adverse effects to human health. This work emphasized on the removal of terbutaline from wastewa...

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Veröffentlicht in:Environmental research 2024-10, Vol.258, p.119413
Hauptverfasser: Usman, Armaya'u, Khoo, Kuan Shiong, Ariffin, Marinah Mohd, Loh, Saw Hong, Wan Mohd Khalik, Wan Mohd Afiq, Yusoff, Hanis Mohd, Zango, Zakariyya Uba, Aldaghri, Osamah, Ibnaouf, Khalid Hassan, Eisa, M H, Binzowaimil, Ayed M, Lim, Jun Wei
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Sprache:eng
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Zusammenfassung:Frequent detection of terbutaline in wastewater highlights its potential risks to human health associated in the environment. Exposure to terbutaline through contaminated water sources or food chain have adverse effects to human health. This work emphasized on the removal of terbutaline from wastewater using adsorption technology. Mechanochemically synthesized [Cu(INA) ] metal-organic frameworks (MOFs) and its magnetic composite ([Cu(INA) ]-MOF@Fe O ) are designed with higher specific surface areas and tailored features to accommodate the molecular size and structure of terbutaline. Thus, batch experiment has been conducted using the [Cu(INA) ]-MOF and [Cu(INA) ]-MOF@Fe O for the terbutaline adsorption. The adsorption efficiency achieved by the MOFs was 91.8% and 99.3% for the Cu(INA) ]-MOF and [Cu(INA) ]-MOF@Fe O respectively. The optimum for the adsorption study included terbutaline concentration of 40 mg/L, adsorbent dose of 5 mg/L, pH of 11, temperature of 25 °C and equilibrium time of 40 min. The kinetics and isotherms have been described by pseudo-second order and Langmuir models, while the thermodynamics revealed the exothermic and spontaneous nature of the process. The promising performance of the MOFs is manifested on the ease of regeneration and reusability, achieving adsorption efficiency of 85.0% and 94.7% by the Cu(INA) ]-MOF and [Cu(INA) ]-MOF@Fe O , respectively at five consecutive cycles. The higher performance of the MOFs demonstrates their excellent potentialities for the terbutaline adsorption from the aqueous solution.
ISSN:1096-0953
0013-9351
1096-0953
DOI:10.1016/j.envres.2024.119413