Low carbon-to-nitrogen (C/N) municipal wastewater often limits heterotrophic denitrification and increases external carbon addition. This study evaluated an exogenous denitrifying bioaugmentation (DEN) strategy for improving nitrogen removal per unit of external carbon added. The screened inoculant reached approximately 2.5 × 109 CFU/mL, and maximum nitrate and nitrite reduction rates of 307.42 and 215.42 g N/(m3 h), respectively, were achieved by the selected isolates. Among the tested carbon sources, the highest denitrification rate was obtained with sodium acetate. Across wastewater samples from six municipal wastewater treatment plants (WWTPs), the apparent C/N requirement was reduced from 2.79–9.41 to 1.92–5.20 by DEN addition, corresponding to a 21–55% decrease in chemical oxygen demand (COD) required per unit total nitrogen (TN) removed. During full-scale validation at a 24,000 m3/d WWTP, effluent TN was maintained at approximately 10 mg/L through startup and adaptive maintenance dosing, while specific denitrification rate (SDNR) was increased by approximately 2.3-fold. Activated-sludge community restructuring was indicated by 16S rRNA sequencing, with an increase in the relative abundance of Pseudomonadota from 18.4% to 27.6% after dosing. Based on external carbon-source expenditure, the specific external carbon-source cost per unit TN removed decreased from 0.036 to 0.011 Chinese Yuan (CNY)/(t water·mg TN), corresponding to a 69.4% reduction in this cost indicator. Overall, DEN bioaugmentation was shown to be a practical engineering tool for carbon-efficient nitrogen removal from low-C/N municipal wastewater.
Cola wastewater, generated during the production of sugar-containing beverages, is a low-toxicity effluent rich in organic matter and may serve as a promising external carbon source for biological denitrification. However, its phosphate content often exceeds the relevant quality limit, and its low carbon bioavailabilit...
Yanxia Xu, Yu-Bing Chen, Liang Song et al.· Bioresource Technology· 0 citations
Surface flow constructed wetlands (SFCWs) treating low carbon-to-nitrogen ratio wastewater are often limited by insufficient electron donor availability, leading to inefficient denitrification and greenhouse gas emissions. This study evaluated mixotrophic SFCWs integrated with Arundo donax straw and elemental sulfur (S...
ABSTRACT 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 fluorescen...
The anammox process demonstrates significant potential as an energy-efficient nitrogen removal technology in wastewater treatment. However, its operational strategies and nutrient transformation mechanisms for treating complex high-ammonia wastewater require further investigation. This study developed a continuous-flow...
Hao-Ran Liang, Jin-Jin Liu, Zhao-Zhi Wang et al.· Bioresource Technology· 0 citations
Low-carbon secondary effluent presents significant challenges for effective nitrogen removal due to limited available organic carbon. In this study, a laboratory-scale microbial system integrating a polysaccharide-based external carbon source (MP) with the nitrate-assimilating bacterium Enterobacter hormaechei EN-1 was...
Using polybutylene succinate (PBS) to enhance nitrogen removal from low-carbon wastewater has gained increasing attention, yet its temperature adaptability remains unclear. PBS-enhanced nitrogen removal and its coupled bio-abiotic mechanisms were evaluated from 5 to 34 °C in a lab-scale system treating synthetic wastew...