Microbial Fuel Cells and BioremediationWastewater Treatment and Nitrogen RemovalAmmonia Synthesis and Nitrogen Reduction

Xiaofang Yan, Sanne M. de Smit, Dandan Liu, C. Buisman, A. ter Heijne

2026.1.20Environmental Science & Technology Letters

DOI: 10.1021/acs.estlett.5c01096

Abstract

Microbial electrolysis cells (MECs) offer a novel alternative to conventional biological ammonium (NH 4 + ) removal by using electrodes rather than oxygen as electron acceptors. However, NH 4 + oxidation at bioanodes can result in substantial nitrous oxide (N 2 O) emissions─a potent greenhouse gas with significant climate impact. We investigated the potential of hydrogenotrophic denitrification within the anodic compartment to mitigate N 2 O emissions during NH 4 + removal. In situ hydrogen (H 2 ) addition effectively reduced N 2 O concentrations to below 0.01 mg of N/L, without nitrate or nitrite accumulation. Batch experiments demonstrated that the suspended biomass exhibited a high capacity for N 2 O reduction, which was strongly dependent on H 2 availability and linked to denitrification activities. Integrating hydrogenotrophic denitrification with NH 4 + oxidation in MECs presents a promising approach for sustainable nitrogen management with near-zero N 2 O emission.

Citation format

YAN, Xiaofang, et al. Toward nitrous oxide-free ammonium treatment: Integrating hydrogenotrophic denitrification in anoxic bioanodes. Environmental Science & Technology Letters, 2026, 13(2): 255–260.