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April 16, 2026Colloid Journal0 citations

Halloysite–Iron Oxide Composites as Tetracycline Carriers. Adsorption Properties and Antimicrobial Activity In Vitro

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ОАО. В. АлексееваАНА. В. НосковDYD.N. Yashkova

Key Points

  • This research aims to explore the ability of halloysite–iron oxide composites to adsorb tetracycline and their antimicrobial effects.
  • Synthesized halloysite/iron oxide composite using chemical coprecipitation.
  • Studied the sorption properties of both halloysite and the composite regarding tetracycline.
  • Analyzed the kinetics of the sorption process with pseudo-first- and pseudo-second-order models.
  • Evaluated antimicrobial activity against E. coli bacteria before and after tetracycline adsorption.
  • The composite exhibited superior sorption efficiency for tetracycline compared to halloysite.
  • Kinetics of the sorption process effectively fit pseudo-first- and pseudo-second-order models.
  • Tetracycline saturation reduced the viability of E. coli M-17 bacteria.

Abstract

A powdered halloysite/iron oxide composite has been synthesized by the chemical coprecipitation method. The sorption properties of halloysite and the composite have been studied with respect to tetracycline. The halloysite/iron oxide composite has been found to be a more efficient sorbent than halloysite. Mathematical processing of the experimental data has led to a conclusion that the kinetics of the sorption process can be described by the pseudo-first- or pseudo-second-order kinetic models. The antimicrobial properties of the synthesized composite samples with respect to E. coli M-17 bacteria have been studied before and after tetracycline adsorption. It has been revealed that the saturation of the composite with the antibiotic leads to a decrease in the viability of bacteria.

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Cite This Study

Алексеева et al. (2026) studied this question.

synapsesocial.com/papers/69e07e582f7e8953b7cbf56chttps://doi.org/10.1134/s1061933x25601696
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