Yuwei Zhang, Shuang Gao, Yujie Zhu, Kaihua Geng, Sitong Li, Wenxiang Yi, Jiayu Ren, Yanan Lu, Jing Gu, Hua Wang, Yuan Wang, Lianshun Wang, Guojun Yang
Efficient nitrogen removal from aquaculture wastewater is critical for sustaining aquatic ecosystem sustainability. In this study, a highly efficient heterotrophic nitrification-aerobic denitrification (HN-AD) bacterium was isolated from aquaculture sediment. The strain was identified as Pseudomonas fluorescens JSRD-3 and evaluated for its nitrogen removal performance. Sodium citrate was determined as the optimal carbon source. Strain JSRD-3 exhibited excellent nitrogen removal across wide ranges of C/N ratio, pH, dissolved oxygen (DO), temperature, and salinity. With single nitrogen sources, complete removal of ammonium (NH₄⁺-N), nitrate (NO₃--N), and nitrite (NO₂--N) was achieved within 12 h. Mixed nitrogen experiments further confirmed that strain JSRD-3 could simultaneously and efficiently transform multiple inorganic nitrogen species. It showed a significant preference for NH₄⁺-N utilization. Response surface methodology (RSM) identified pH, temperature, and shaking speed as the key influencing factors. Under the optimized conditions, NH₄⁺-N removal reached 98.90% at 9 h. Microbial immobilization further enhanced the NO₃--N removal efficiency and operational stability of the strain. Polyurethane foam immobilization outperformed loofah sponge. Notably, polyurethane foam-immobilized JSRD-3 completely removed NH₄⁺-N, NO₂--N, and NO₃--N from real non-sterile aquaculture wastewater within 16 h. These results highlight JSRD-3 as a promising candidate for rapid, efficient, and interference-resistant nitrogen removal in practical aquaculture wastewater treatment.