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Dosage effect of micron zero-valent iron during thermophilic anaerobic digestion of waste activated sludge: Performance and functional community

This work examined the performance and microbial traits in a thermophilic anaerobic digestion (TAD) of waste activated sludge that was impacted by micron zero valent iron (mZVI). Results showed that methane production was promoted by 0.8, 11.9, and 12.0 times, respectively, when mZVI was at dosages...

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Published in:Environmental research 2023-11, Vol.237, p.116997-116997, Article 116997
Main Authors: Li, Wenqian, Chen, Jianglin, Pang, Lina, Lu, Yuanyuan, Yang, Ping
Format: Article
Language:English
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Summary:This work examined the performance and microbial traits in a thermophilic anaerobic digestion (TAD) of waste activated sludge that was impacted by micron zero valent iron (mZVI). Results showed that methane production was promoted by 0.8, 11.9, and 12.0 times, respectively, when mZVI was at dosages of 25, 100, and 250 mg/g total solid (TS). Also, the consumption of volatile fatty acids was increased by mZVI at higher dosages (100 and 250 mg/g TS). Furthermore, 16S rRNA sequencing demonstrated that microbial community stabilized after day 18 regardless of the dosage of mZVI, and that different dosages of mZVI induced different shifts in the functional community of the archaea rather than the bacteria involved in TAD. As a result, mZVI at 100 mg/g TS could increase the relative abundance of archaeal genera Methanothermobacter the most, increasing by 22.8% at the end of TAD compared to CK. Besides, redundancy analysis revealed that the physicochemical properties explained 79.65% and 89.10% of the variations of bacterial and archaeal abundance, respectively. Also, the findings of the correlation analysis revealed that total dissolved iron, ferrous iron, pH, and ammonium nitrogen, may be the key divers of altering functional communities, particularly archaea. Moreover, mZVI at 100 and 250 mg/g TS boosted the metabolic pathways of environmental information processing (ABC transporters) in bacteria and carbon metabolism and methane metabolism for archaea, as well as relative abundances of enzymes and their activities involved in various methanogenic pathways. This study provides new perspectives on the application of mZVI in solid wastes treatments. •Dose effect of micron ZVI (mZVI) in sludge anaerobic digestion (55 °C) is revealed.•mZVI at 100 mg/g total solid performs better in increasing methane production.•mZVI, regardless of dosages, promotes the hydrogenotrophic Methanothermobacter.•mZVI boosts enzymes engaged in hydrotrophic and acetotrophic pathways.•Dissolved iron, Fe2+, pH, NH4+-N, and fatty acids shift the functional community.
ISSN:0013-9351
1096-0953
DOI:10.1016/j.envres.2023.116997