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Updated: Jun 2, 2026

Electrochemically and Bioelectrochemically Induced Ammonium Recovery
Published on: January 22, 2015
Denitrification vs. assimilation: shifting metabolic pathways to enable N recovery from low-strength municipal
Guanglin Zhang1, Shuncai Wang2, Weiguang Li2
1College of Ecology and Environment, Zhengzhou University, 450001 Zhengzhou, China; School of Environment, Harbin Institute of Technology, 150090 Harbin, China.
Abstract:
Nitrogen (N) recovery from low-strength municipal wastewater is essential for sustainable treatment. This study operated two pilot‑scale modified anaerobic‑anoxic‑oxic reactors to investigate N transformations under different influent qualities. With low N-load wastewater (NH4+‑N ≤ 20 mg/L), acetate promoted ammonium assimilation mainly via the glutamine synthetase/glutamate synthase pathway, accounting for 50% of influent TN, whereas glycerol favored denitrification. Under higher N load (≥50 mg/L), glycerol enhanced assimilation through the glutamate dehydrogenase pathway, contributing 46% of influent TN. Sludge analysis indicated that assimilation directed N toward protein synthesis (protein content > 30%), thereby improving N recovery potential. Key microbial phyla included Pseudomonadota and Bacteroidota, with genera such as Defluviicoccus harboring arginine‑synthesis genes, implying their potential role in efficient assimilation under low C/N. Coupling ammonium assimilation with denitrification offers a viable strategy for simultaneous N removal and recovery, providing a potential framework for transitioning treatment plants into resource‑recovery facilities.
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