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◆ Water research2026-09-09

Nitrate removal by anammox-ZnS biohybrid system utilizing hydraulic kinetic energy.

Chao Wang, Xiumei Duan, Sen Qiao

原始摘要(英文原文)· Original abstract
Nitrate (NO3-) removal from low-carbon wastewater is challenging for conventional denitrification due to the need for external electron donors. Anammox bacteria could reduce nitrate via the dissimilatory nitrate reduction to ammonium (DNRA) pathway using intracellular glycogen, but this endogenous process suffered from slow kinetics and finite glycogen reserves. Here, we coupled anammox bacteria with piezoelectric ZnS nanoparticles under mechanical agitation (simulating hydraulic kinetic energy) to construct a piezoelectric-driven nitrate reduction system. The system achieved complete NO3- and total nitrogen removal from synthetic wastewater (50 mg-N/L NO3-) within 30 h, with the nitrate reduction efficiency enhanced approximately 2.7-fold compared to the sole endogenous DNRA-driven group, and produced no detectable nitrous oxide (N2O). Inhibitor assays confirmed that NO3- conversion followed the DNRA-anammox coupled pathway and that piezoelectrons (generated by mechanical agitation of ZnS nanoparticles) served as a sustainable exogenous electron source. Transcriptomic analysis revealed that genes related to extracellular electron transfer, DNRA, and the respiratory chain were coordinately upregulated, while genes related to glycolysis were downregulated, reflecting a shift in metabolism from endogenous glycogen utilization to exogenous electron utilization. Overall, this study overcame the kinetic and electron-source limitations of endogenous DNRA in anammox, providing a hydraulic kinetic energy-driven, low-carbon, and N2O-free strategy for removing NO3- from low-carbon wastewater.
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Nitrate removal by anammox-ZnS biohybrid system utilizing hydraulic kinetic energy. — 科研速览 Science Skim