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October 1, 2025Processes5 citationsOpen Access

Fabrication of Spinel Magnesium Aluminate Doped with Divalent-First-Row Transition-Metal Oxides as Efficient Sorbents for Pharmaceutical Contaminants

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MSMutaz SalihTITarig G. IbrahimRRRasha S. Ramadan

Key Points

  • Doxycycline removal reached 106.1 mg g−1 using 10%CuO@MgAl2O4, indicating high adsorption capacity.
  • Sorbent properties were confirmed with SEM and BET showing average sizes of 38.8 to 40.8 nm and varying surface areas.
  • Sorption was best described by the pseudo-second order model and impacted by pH, with optimal results at pH 6.0.
  • 10%CuO@MgAl2O4 showcased over 98% effectiveness in removing doxycycline from seawater and surface water during trials.

Abstract

Herein, nanoscale MgAl2O4 (MOA), 10%CuO@MgAl2O4 (10Cu@MOA), 10%NiO@MgAl2O4 (10Ni@MOA), and 10%CoO@MgAl2O4 (10Co@MOA) were synthesized employing butylated hydroxytoluene (the food additive BHT) as a capping agent. The SEM images illustrated average sizes of 38.8, 30.0, 40.8, and 32.7 nm for MOA, 10Cu@MOA, 10Ni@MOA, and 10Co@MOA, respectively, and their BET surface area were 84.4, 141.8, 126.7, and 105.3, respectively. Doxycycline DXC removal was studied employing the MOA, 10Cu@MOA, 10Ni@MOA, and 10Co@MOA, which resulted in qt values of 57.3, 106.1, 97.7, and 73.9 mg g−1, respectively. The pseudo-second order model best described the DXC sorption onto MOA, 10Cu@MOA, 10Ni@MOA, and 10Co@MOA, and both film diffusion models influenced the DXC sorptions onto the sorbents. The DXC sorption onto the 10Cu@MOA fitted the Freundlich model. The thermodynamics implied endothermic-spontaneous DXC sorption onto the10Cu@MOA. The pH study exposed that the DXC removal by 10Cu@MOA was more effective in a mildly acidic medium (pH = 6.0). Furthermore, the 10Cu@MOA effectiveness in treating surface water contaminated by 5.0 and 10.0 mg L−1 DXC was 99.9% and 98.1%, respectively, while it was 94.7% and 92.5% in treating the concentrations above in seawater, respectively. The reusability study showed a 10% reduction in the 10Cu@MOA’s removal efficiency at the fourth cycle, which is encouraging for real-life applications.

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Cite This Study

Salih et al. (2025) studied this question.

synapsesocial.com/papers/68dd89defe798ba2fc497c8fhttps://doi.org/10.3390/pr13103095
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