Yibo Sun, Xintao Wu, Xinyu Jing, Meilan Zhang, Zhaobin Liu, Yijing Gao, Huang Huang, Yu-You Li, Xueqin Lu, Guangyin Zhen
Anaerobic ammonium oxidation (anammox) is a promising enormous energy- and resource-saving technology for nitrogen removal. Conventional anammox relies on nitrite (NO 2 – –N) for the oxidation of ammonium (NH 4 + –N) to dinitrogen gas (N 2 ). However, the current partial nitrification process for NO 2 – –N production exhibits inherent instability and substantial energy demands, restricting its practical application. To address such limitations, an upflow dual-chamber electrocatalysis-driven anammox membrane bioreactor (UEA-MBR), by employing ruthenium–iridium-coated titanium alloy electrodes, was constructed to minimize NO 2 – –N dependence while achieving high nitrogen elimination. The newly developed UEA-MBR showed excellent performance in nitrogen removal at a NO 2 – –N concentration (NH 4 + –N/NO 2 – –N = 1:0.4) even much lower than the theoretical. This UEA-MBR achieved a remarkable total nitrogen removal efficiency of 89.7% and maintained 60.8% even without NO 2 – –N supply. Besides the conventional anammox, the electrocatalytic anammox process by directly oxidizing NH 4 + –N to N 2 while delivering electrons was confirmed as well in the bioanode. Moreover, the generated electrons, after being transferred into the cathode, were utilized to further drive the anammox-generated NO 3 – –N to NO 2 – –N via partial denitrification, which provided the self-produced NO 2 – –N for the anodic conventional anammox process via recirculation of effluent and ensured the high-nitrogen removal. This electrocatalytic system enriched the key functional genus electroactive Candidatus_Brocadia (23.5%) and norank_o_ Fimbriimonadales (13.8%) and upregulated the genes of hzs, nirS, and nirB, establishing a robust nitrogen removal bioreactor. This integrated UEA-MBR shows great potential in breaking the barrier of conventional NO 2 – –N-dependent anammox, offering a novel strategy toward sustainable and low-carbon wastewater treatment.