Polyvinyl Alcohol-Sodium Alginate-Zeolite Biofilm Carriers to Enhance Wastewater Deammonification

Autores/as

  • Sheyla Chero-Osorio Department of Civil and Environmental Engineering, University of South Florida - United States of America (USA); Centro de Investigación y Tecnología del Agua (CITA), Universidad de Ingeniería y Tecnología (UTEC) - Lima, Perú (PE)
  • Cooper James Department of Chemical, Biological and Materials Engineering, University of South Florida - United States of America (USA)
  • Susienna Persaud Department of Chemical, Biological and Materials Engineering, University of South Florida - United States of America (USA)
  • Ananda Bhattacharjee Department of Civil and Environmental Engineering, University of South Florida - United States of America (USA)
  • John Kuhn Department of Chemical, Biological and Materials Engineering, University of South Florida - United States of America (USA)
  • Sarina Ergas Department of Civil and Environmental Engineering, University of South Florida - United States of America (USA)

DOI:

https://doi.org/10.18687/LACCEI2026.1.1.1781

Palabras clave:

Ammonium Adsorption, Bioregeneration, Chabazite, Partial Nitritation/Anaerobic Ammonium Oxidation, Zeolite-Embedded Hydrogels

Resumen

Polyvinyl alcohol-sodium alginate (PVA-SA) hydrogel biofilm carriers exhibit high biomass retention and porosity. In this study, novel composite PVA-SA carriers were synthesized for partial nitritation/anammox (PN/A) by encapsulating a zeolite mineral (chabazite) and anammox inside the carrier and growing ammonia oxidizing microorganisms (AOMs) on the carrier surface. Initial experiments were carried out in anaerobic sequencing batch reactors (SBRs) with an anammox-based feed. Limited ammonium removal was observed in abiotic controls, while SBRs containing carriers or suspended cultures simultaneously removed ammonium and nitrite, while generating nitrate. AOMs were subsequently inoculated into the SBRs and feed and aeration conditions were adjusted to promote PN/A. Nitrate generation was lower in the carrier SBR compared with suspended growth control, resulting in total inorganic nitrogen removal rates of 11.3 mg N/L/d and 8.9 mg N/L/d for carrier and suspended SBRs, respectively. Overall, the PVA-SA-chabazite carrier SBR exhibited enhanced PN/A performance, most likely because chabazite concentrated ammonium inside the carriers to promote mass transfer and enhance anammox activity. Chabazite was bioregenerated by AOMs and anammox, allowing the carriers to be reused for fifteen cycles over 185 days. The results underscore the potential application of novel PVA-SA-chabazite carriers to promote PN/A for wastewater treatment.

Descargas

Publicado

2026-07-27

Número

Sección

Articles

Licencia

Licencia Creative Commons

Esta obra está bajo una Licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 Internacional.

LACCEI conserva el copyright de todos los artículos publicados bajo los términos de su acuerdo de transferencia de copyright. Como titular del copyright, LACCEI distribuye los artículos al público bajo la Licencia Internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0 (CC BY-NC-SA 4.0).

Cómo citar

Chero-Osorio, S., James, C., Persaud, S., Bhattacharjee, A., Kuhn, J., & Ergas, S. (2026). Polyvinyl Alcohol-Sodium Alginate-Zeolite Biofilm Carriers to Enhance Wastewater Deammonification. LACCEI, 1(14). https://doi.org/10.18687/LACCEI2026.1.1.1781

Artículos más leídos del mismo autor/a