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March 10, 2026Nature-Based Solutions2 citationsOpen Access

Constructed Wetlands as Nature-Based Solutions for Wastewater Treatment: A Scoping Review of IUCN Global Standard Reporting and Complementary Advanced Oxidation Polishing

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NRNasrin RastinifardKTKiran Tota-Mahara

Key Points

  • The review aims to assess the efficacy of constructed wetlands and advanced oxidation processes in wastewater treatment and identify reporting standards.
  • Conducted a scoping review mapping 36 peer-reviewed studies from 2010 to 2025.
  • Evaluated constructed wetlands used alone or with advanced oxidation processes for wastewater treatment.
  • Analyzed outcomes related to conventional pollutants, micropollutants, and microbial indicators.
  • Constructed wetlands generally achieved high removal rates for COD, TN, and TP.
  • Indicator bacteria showed significant reductions, supporting secondary treatment goals.
  • Evidence on micropollutants was varied; carbamazepine showed limited removal.
  • PFAS detection was limited and results varied depending on the compound.
  • Gaps in reporting on antibiotic-resistance genes were identified.

Abstract

Wastewater treatment remains a critical challenge for water security, ecological integrity, and public health. Constructed wetlands (CWs) are widely advanced as nature-based solutions (NbS) because they use ecosystem processes for water purification and can deliver ecological co-benefits. This scoping review mapped 36 peer-reviewed studies (2010–2025; 63 extracted records) evaluating CWs used alone or within CW-based treatment trains incorporating advanced oxidation processes (AOPs) as pre-treatment or post-polishing. Outcomes covered conventional pollutants, selected micropollutants, and microbial indicators; PFAS and antibiotic-resistance indicators were assessed where reported. Vertical subsurface-flow and hybrid CWs generally reported high removal of COD, TN, and TP and meaningful reductions of indicator bacteria, supporting secondary treatment objectives. Micropollutant evidence was heterogeneous and compound-specific; carbamazepine showed limited attenuation. PFAS reporting in the mapped corpus was sparse and, where present, indicated variable, compound-dependent attenuation rather than demonstrable absence. No included studies provided extractable antibiotic-resistance gene outcomes. AOP units (e.g., ozonation, UV/H₂O₂, photo-Fenton) were associated with positive within-study deltas in some cases but were matrix-dependent and carry energy/chemical demands and potential transformation products requiring monitoring. IUCN Global Standard assessment was applied to the CW intervention only, revealing stronger reporting for problem framing and design intent and persistent gaps in equity, inclusiveness, and policy coherence.

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Cite This Study

Rastinifard et al. (2026) studied this question.

synapsesocial.com/papers/69af944f70916d39fea4b5c0https://doi.org/10.1016/j.nbsj.2026.100318
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