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February 2, 2026Water0 citationsOpen Access

Effects of Microplastics on Nitrogen Removal Performance of Enriched Anammox Cultures

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YKYanisa KhotchachainTSTharinee SaleepochnPNPongsak Noophan

Key Points

  • Investigate how microplastics and their leachates affect nitrogen removal performance of anammox cultures.
  • Analyzed effects of LDPE and PP microplastics on anammox performance using various biomass types.
  • Conducted non-targeted GC-MS analysis to identify leachable compounds from microplastics.
  • Assessed specific anammox activity across different biomass configurations.
  • Exposure to LDPE and PP MPs did not significantly inhibit specific anammox activity.
  • Leachates from microplastics caused transient inhibition of nitrogen removal.
  • Dibutyl phthalate caused up to 29.4% inhibition in granular biomass but was fully recoverable within 24 hours.
  • Higher retention of DBP was noted in granular and attached biomass compared to suspended growth.

Abstract

Microplastics (MPs) and their chemical leachates are increasingly detected in landfill leachate, raising concerns about impacts on biological nitrogen removal. This study examined the effects of low-density polyethylene (LDPE) and polypropylene (PP) MPs on anaerobic ammonium oxidation (anammox) performance using suspended, attached, and granular biomass. The results showed that exposure to LDPE and PP MPs did not significantly inhibit specific anammox activity (SAA) across all anammox biomass types. However, the leachates of LDPE and PP MPs under relevant EU migration testing guidelines could cause transient inhibition. Non-targeted GC-MS analysis identified 31 and 37 leachable compounds from LDPE and PP, including the toxic plasticizer dibutyl phthalate (DBP). DBP caused concentration-dependent but transient inhibition of nitrogen removal in granular biomass, peaking at 29.4% after 5 h at 100 mg/L, with full recovery within 24 h. Higher DBP retention was observed in granular and attached growth biomass compared to suspended growth biomass. Crucially, complex biomass structures buffer these effects, emphasizing the need to assess both physical and chemical MP aspects in wastewater systems. Consequently, attached growth and granular systems are recommended over suspended growth configurations for leachate treatment, owing to their superior resilience to toxic shock and enhanced retention capabilities.

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Cite This Study

Khotchachain et al. (2026) studied this question.

synapsesocial.com/papers/6980ff37c1c9540dea811fe0https://doi.org/10.3390/w18030344
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