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Exposure to polystyrene nanoplastic leads to inhibition of anaerobic digestion system

The Science of The Total Environment 2017 212 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Jiannan Ding, Shan‐Fei Fu, Jiannan Ding, Shan‐Fei Fu, Jiannan Ding, Jiannan Ding, Xian-Zheng Yuan Jiannan Ding, Jiannan Ding, Jiannan Ding, Jiannan Ding, Xian-Zheng Yuan Shan‐Fei Fu, Jiannan Ding, Hua Zou, Shan‐Fei Fu, Hua Zou, Xian-Zheng Yuan Jiannan Ding, Yun Zhang, Hua Zou, Yifei Li, Jiannan Ding, Yun Zhang, Xian-Zheng Yuan Rong Zhu, Xian-Zheng Yuan Xian-Zheng Yuan Rong Zhu, Hua Zou, Hua Zou, Xian-Zheng Yuan Hua Zou, Hua Zou, Jiannan Ding, Shan‐Fei Fu, Xian-Zheng Yuan Hua Zou, Xian-Zheng Yuan Hua Zou, Hua Zou, Jiannan Ding, Jiannan Ding, Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Hua Zou, Jiannan Ding, Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Yifei Li, Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan Xian-Zheng Yuan

Summary

Researchers showed that polystyrene nanoplastics inhibit methane production in sewage sludge digesters in a concentration-dependent manner, reducing methane yield by up to 14% and delaying the process start-up while shifting microbial community composition away from key methane-producing archaea.

In this study, impacts of nanoplastic on the pure and mixed anaerobic digestion systems were investigated. Results showed the growth and metabolism of Acetobacteroides hydrogenigenes were partly inhibited by nanoplastic existed in the pure anaerobic digestion system. The anaerobic digestion of sewage sludge was also obviously inhibited by nanoplastic existed in the mixed anaerobic digestion system. Both the methane yield and methane production rate of the mixed anaerobic digestion system showed negative correlation with the nanoplastic concentration. Compared with anaerobic digestion system without nanoplastic, methane yield and maximum daily methane yield at the nanoplastic concentration of 0.2g/L decreased for 14.4% and 40.7%, respectively. In addition, the start-up of mixed anaerobic digestion system was prolonged by addition of nanoplastic. Microbial community structure analysis indicated the microbial community structures were also affected by nanoplastic existed in the system. At the nanoplastic concentration of 0.2g/L, the relative abundances of family Cloacamonaceae, Porphyromonadaceae, Anaerolinaceae and Gracilibacteraceae decreased partly. Conversely, the relative abundances of family Anaerolinaceae, Clostridiaceae, Geobacteraceae, Dethiosulfovibrionaceae and Desulfobulbaceae improved partly.

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