Temperature Effects on Biotic and Abiotic Mechanisms of Nitrogen Removal Enhanced by Polybutylene Succinate in Synthetic Low-Carbon Wastewater

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 wastewater. High total nitrogen (TN) removal efficiency of 89.9% was achieved at 23–25 °C with influent TN of 60.8 mg/L, indicating an optimal temperature window. Mechanistic analysis revealed that temperatures above 23 °C promoted higher microbial community diversity, fostering a consortium dominated by unclassified_Burkholderiaceae (7.73–13.93%) and Leucobacter (6.29–7.47%), accompanied by enrichment of carbon/nitrogen metabolism-related genes and efficient nitrogen removal. Temperatures above 23 °C also maintained a high organic matter diffusion coefficient (0.043–0.222 Å2/ps), enabling microorganisms to fully utilize carbon sources. A random forest model linked the diffusion coefficient closely to pollutant removal efficiency and identified low-temperature-adapted genera (Flavobacterium, Dechloromonas) and functional genes (gapdh, fba, gpmI, napA, napB, nosZ), offering insights for enhancing low-temperature nitrogen removal. The model predicted effluent TN well (R2 > 0.98) and confirmed effluent NH4+-N as the dominant driver of TN variation. Pilot-scale tests with real wastewater are still needed. This study provides theoretical support for PBS-enhanced nitrogen removal in low-carbon wastewater.

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Publication Details

Journal
Microorganisms
Published
2026-09-25
DOI
https://doi.org/10.3390/microorganisms14102167
Primary Topic
Wastewater Treatment and Nitrogen Removal
Type
article
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article

Temperature Effects on Biotic and Abiotic Mechanisms of Nitrogen Removal Enhanced by Polybutylene Succinate in Synthetic Low-Carbon Wastewater

Xiaojun Guo, Heng Wu, Jia Liu, Jianhua Yuan
Microorganisms
Wastewater Treatment and Nitrogen Removal
article

Temperature Effects on Biotic and Abiotic Mechanisms of Nitrogen Removal Enhanced by Polybutylene Succinate in Synthetic Low-Carbon Wastewater

Xiaojun Guo, Heng Wu, Jia Liu, Jianhua Yuan
article en

Abstract

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 wastewater. High total nitrogen (TN) removal efficiency of 89.9% was achieved at 23–25 °C with influent TN of 60.8 mg/L, indicating an optimal temperature window. Mechanistic analysis revealed that temperatures above 23 °C promoted higher microbial community diversity, fostering a consortium dominated by unclassified_Burkholderiaceae (7.73–13.93%) and Leucobacter (6.29–7.47%), accompanied by enrichment of carbon/nitrogen metabolism-related genes and efficient nitrogen removal. Temperatures above 23 °C also maintained a high organic matter diffusion coefficient (0.043–0.222 Å2/ps), enabling microorganisms to fully utilize carbon sources. A random forest model linked the diffusion coefficient closely to pollutant removal efficiency and identified low-temperature-adapted genera (Flavobacterium, Dechloromonas) and functional genes (gapdh, fba, gpmI, napA, napB, nosZ), offering insights for enhancing low-temperature nitrogen removal. The model predicted effluent TN well (R2 > 0.98) and confirmed effluent NH4+-N as the dominant driver of TN variation. Pilot-scale tests with real wastewater are still needed. This study provides theoretical support for PBS-enhanced nitrogen removal in low-carbon wastewater.

MicroorganismsVol. 14(10)
Tarim University (CN), Chengdu Institute of Biology (CN), University of South China (CN)
Clean water and sanitation
Openalex Percentile: Top 22%
Wastewater Treatment and Nitrogen Removal
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Temperature Effects on Biotic and Abiotic Mechanisms of Nitrogen Removal Enhanced by Polybutylene Succinate in Synthetic Low-Carbon Wastewater — Xiaojun Guo, Heng Wu, et al. · Microorganisms (2026) | TGRS Research Map | TGRS