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March 14, 2026Nature Communications0 citationsOpen Access

A hydro-topological strategy enables self-regulating biofilms for sustainable wastewater treatment

YFYong FangZZZhiqiang ZhangBXBoru Xue

Key Points

  • The aim is to enhance the performance of moving bed biofilm reactors (MBBRs) in wastewater treatment by reducing carrier clogging.
  • Introduced V-carrier hydro-topological design for biofilm self-regulation.
  • Conducted long-term treatment of real municipal wastewater over 500 days.
  • Assessed performance under varying temperature and loading conditions.
  • Achieved 3.2-fold higher unit biomass nitrification rate than a standard K3 carrier.
  • Maintained efficient nutrient removal with 44% less biofilm biomass.
  • Demonstrated that treatment efficiency is independent of biomass quantity.

Abstract

Abstract The moving bed biofilm reactor (MBBR) is a cornerstone technology in modern wastewater treatment, yet its performance is often hindered by carrier clogging, which significantly reduces overall treatment efficiency and undermines the technology’s environmental benefits. Here, we introduce a V-carrier hydro-topological design strategy that enables biofilm self-regulation, allowing simultaneous control of biofilm thickness and continuous hydraulic shear-induced self-cleaning. In a pure biofilm system treating real municipal wastewater for over 500 days, the V-carrier achieves stable and efficient nutrient removal even under low-temperature (9.1 °C) and high-loading conditions. Crucially, it achieves a 3.2-fold higher unit biomass nitrification rate with a biofilm biomass 44% lower than a conventional K3 carrier, demonstrating that treatment efficiency is decoupled from biomass quantity through optimal ecological niche design. This work establishes a paradigm for biofilm reactor design, transforming carriers from passive substrates into active regulators of microbial ecosystems, with profound implications for sustainable water infrastructure.

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Cite This Study

Fang et al. (2026) studied this question.

synapsesocial.com/papers/69b4fbd5b39f7826a300c49ehttps://doi.org/10.1038/s41467-026-70682-y
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