Research Article Open Access

Anaerobic Fermentation for Ceftriaxone Sodium Degradation in Excess Sludge: pH-Dependent Performance, Metabolite Formation, and Microbial Community Dynamics

Weiwei Li1, Hong Niu2, Yonghui Zhang3, Hong Liu4 and Yongzhi Chen1
  • 1 School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou 730070, China
  • 2 Gansu Research Institute of Light Industry CO., LTD, Lanzhou 730000, China
  • 3 Lanzhou Jiaotong University, Key Laboratory of Yellow River Water Environment in Gansu Province, Lanzhou 730070, China
  • 4 Gansu Provincial Wastewater Treatment Industry Technology Center, Lanzhou 730070, China

Abstract

The accumulation of ceftriaxone sodium (CTX), a third-generation cephalosporin antibiotic, in wastewater and sludge poses significant environmental and health risks, necessitating effective degradation strategies. This study investigated anaerobic fermentation of excess sludge (12,000-14,000 mg/L) spiked with 15 mg/L CTX under varying pH conditions (4, 7, 10, 12) to evaluate sludge reduction, metabolite formation, and microbial community dynamics. Results demonstrated that pH 10 yielded optimal performance, achieving a 62.09% sludge reduction rate, 129.35 mg/L NH₄⁺-N release, and 1,485.84 mg/L volatile fatty acid (VFA) production, alongside efficient CTX degradation via hydrolysis and deamination pathways. Microbial analysis revealed dominant phyla (Proteobacteria, Bacteroidota, Chloroflexi) and genera (Ellin6067, Caldilinea) under pH 4-10, while extreme alkalinity (pH 12) favored Firmicutes but reduced functional diversity. The findings highlight pH 10 as the optimal condition for balancing CTX removal, sludge reduction, and resource recovery, offering a practical pretreatment approach for antibiotic-laden sludge in wastewater treatment.

American Journal of Biochemistry and Biotechnology
Volume 22 No. 2, 2026, 20-1

DOI: https://doi.org/10.3844/ajbbsp.2026.22.02.020

Submitted On: 15 August 2025 Published On: 31 July 2026

How to Cite: Li, W., Niu, H., Zhang, Y., Liu, H. & Chen, Y. (2026). Anaerobic Fermentation for Ceftriaxone Sodium Degradation in Excess Sludge: pH-Dependent Performance, Metabolite Formation, and Microbial Community Dynamics. American Journal of Biochemistry and Biotechnology, 22(2), 20-1. https://doi.org/10.3844/ajbbsp.2026.22.02.020

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Keywords

  • Anaerobic Fermentation
  • Ceftriaxone Sodium
  • Degradation Pathway
  • Microbial Community