反硝化细菌
化学
序批式反应器
胞外聚合物
曝气
制浆造纸工业
碳氮比
硝化作用
氮气
异养
废水
污水处理
食品科学
反硝化
挥发性悬浮物
微生物种群生物学
环境化学
硝化细菌
细菌
生物量(生态学)
生物反应器
活性污泥模型
活性污泥
间歇式反应器
污水污泥
色谱法
生物膜
碳纤维
微生物学
环境工程
作者
Susan N. James,Arya Vijayanandan
摘要
ABSTRACT Graphical abstract shows a microaerobic SND-SBR operated at C/N ratios of 12, 10, and 5. Optimal TN removal occurred at C/N 10. Lower ratios improved nitrification but reduced denitrification, affecting sludge composition and overall performance. Microaerobic sequencing batch reactors (SBRs) enable the efficient removal of organic carbon and nitrogen under reduced aeration demand. This study investigated the effect of influent carbon-to-nitrogen (C/N) ratio on reactor performance, sludge characteristics, and formation of soluble microbial products (SMPs) and extracellular polymeric substances (EPSs) in a microaerobic SBR. Total organic carbon (TOC) removal remained high (>97%) across all C/N ratios. Total nitrogen (TN) removal was strongly dependent on the C/N ratio, with the highest TN removal achieved at an optimal C/N ratio of 10. Lower C/N ratios enhanced nitrifying activity and sludge stability while reducing heterotrophic denitrifying activity. SMP increased at low C/N ratios, whereas maximum EPS production was observed at a C/N ratio of 10. The influent C/N ratio is a key operational parameter that regulates microbial metabolism, EPS and SMP secretion, and sludge structural properties, thereby governing nitrogen removal in microaerobic SBRs. The novelty of this study lies in systematically evaluating the effect of the C/N ratio on nitrogen removal performance, together with microbial metabolic activity indicators and sludge characteristics in a microaerobic SBR system. These findings offer practical insights for designing compact, energy-efficient wastewater treatment systems capable of achieving high nitrogen removal under limited aeration conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI