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April 24, 2026Langmuir4 citations

Highly Efficient Removal of Tetracycline from Water Using Ce-UiO-66/Oxidized Nanodiamond Hybrids

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MFMaryam FarhadipourSASalman AhmadipouyaHMHossein Molavi

Key Points

  • The aim is to investigate the effectiveness of Ce-UiO-66/oxidized nanodiamond hybrids in removing tetracycline from water.
  • Synthesis of adsorbents using a green and water-based method.
  • Experimental adsorption capacity measurements of tetracycline on different composites.
  • Reusability tests over multiple cycles.
  • Ce-UiO-66/OND-2 achieved an adsorption capacity of 342 mg/g, enhanced by 63% compared to pristine Ce-UiO-66.
  • After four cycles, Ce-UiO-66/OND-2 retained approximately 68% of its initial adsorption capacity.
  • The study demonstrates the potential of OND-integrated Ce-MOFs for sustainable water treatment.

Abstract

Tetracycline (TC) is one of the most widely used antibiotics in both human and veterinary medicine. However, its presence in ecosystems creates serious environmental concerns. This study investigates the adsorption of TC using a green-synthesized adsorbent that is composed of a Cerium-based metal-organic framework (Ce-UiO-66 MOF) integrated with an oxidized nanodiamond (OND). The adsorbents were synthesized using a green- and water-based method. Among all composites, Ce-UiO-66/OND-2 (containing 2% OND) achieved an experimental adsorption capacity of 342 mg/g─an approximately 63% enhancement compared to that of the pristine Ce-UiO-66 (210 mg/g). This is attributed to synergistic interactions between the MOF and OND. Reusability tests showed that Ce-UiO-66/OND-2 maintained ≈68% of its initial adsorption capacity after four adsorption-desorption cycles, which shows noticeable reusability and long-term stability. Overall, these findings highlight the potential of OND-integrated Ce-MOFs as sustainable and high-capacity adsorbents for antibiotic-contaminated water treatment.

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Cite This Study

Farhadipour et al. (2026) studied this question.

synapsesocial.com/papers/69eb084f553a5433e34b3578https://doi.org/10.1021/acs.langmuir.5c06334
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