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May 6, 2026Processes0 citationsOpen Access

UV-C LED Disinfection of Antibiotic-Resistant Escherichia coli in Water: Integration with Ceramic Membrane Filtration

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CSCarolina SantosInstituto de Biologia Experimental e TecnológicaLLLisandra LopesInstituto de Biologia Experimental e TecnológicaJSJoão SérioInstituto de Biologia Experimental e Tecnológica

Key Points

  • To evaluate the efficacy of UV-C LED disinfection on antibiotic-resistant Escherichia coli in water systems.
  • Used UV-C LEDs to inactivate antibiotic-resistant E. coli from various water sources.
  • Conducted inactivation assays using two UV wavelengths and measured UV fluences from 1 to 7 mJ/cm2.
  • Utilized ceramic silicon carbide membranes for water treatment and assessed rejection efficiencies.
  • Achieved a log reduction of about 5 with UV fluence of 2 mJ/cm2 for both UV-C wavelengths.
  • Demonstrated high rejection efficiency of 99.9% for total coliforms and E. coli with the membrane.
  • Showed 99.985% or higher reduction in concentrated membrane retentate when combined with UV-C LEDs.

Abstract

The growing problem of antibiotic resistance poses a serious threat to public health and ecosystems. New disinfection methods could help address this global issue. In this study, ultraviolet-C light-emitting diodes (UV-C LEDs) were used to inactivate Escherichia coli isolates resistant to antibiotics. These isolates were obtained from various real water sources, including seawater, surface water, and treated wastewater. Inactivation assays were performed using two wavelengths (255 nm and 265 nm), applying UV fluences ranging from 1 to 7 mJ/cm2 to a phosphate-buffered saline solution inoculated with a mixture of 10 E. coli strains. Using an UV fluence of 2 mJ/cm2, a log reduction of about 5 was achieved with both UV-C wavelengths tested. SEM imaging revealed no observable alterations in cell morphology after UV-C exposure. Pyrimidine dimer formation was quantified, yielding approximately 40 ng/mL of cyclobutane pyrimidine dimers after 2 mJ/cm2 of exposure to both wavelengths. Additionally, water treatment was tested using ceramic silicon carbide membranes. High average rejection efficiencies (99.9%) were obtained for both total coliforms and E. coli using uncut flat sheet membranes. The combination with UV-C LEDs led to treatment of the concentrated membrane retentate (99.985% or higher), highlighting the potential of this treatment approach for effective water disinfection.

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Cite This Study

Santos et al. (2026) studied this question.

synapsesocial.com/papers/69faa25e04f884e66b532f39https://doi.org/10.3390/pr14091471
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