Peracetic acid (PAA)-based pretreatment effectively improves medium-chain fatty acids (MCFAs) production from sewage sludge

Peracetic acid (PAA), known for its environmentally friendly properties as a oxidant and bactericide, is gaining prominence in decontamination and disinfection applications. The primary product of PAA oxidation is acetate that can serve as an electron acceptor (EA) for the biosynthesis of medium-cha...

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Veröffentlicht in:Environmental science and ecotechnology 2024-07, Vol.20, p.100355-100355, Article 100355
Hauptverfasser: Wang, Yufen, Guo, Haixiao, Li, Xuecheng, Chen, Xueming, Peng, Lai, Zhu, Tingting, Sun, Peizhe, Liu, Yiwen
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Sprache:eng
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Zusammenfassung:Peracetic acid (PAA), known for its environmentally friendly properties as a oxidant and bactericide, is gaining prominence in decontamination and disinfection applications. The primary product of PAA oxidation is acetate that can serve as an electron acceptor (EA) for the biosynthesis of medium-chain fatty acids (MCFAs) via chain elongation (CE) reactions. Hence, PAA-based pretreatment is supposed to be beneficial for MCFAs production from anaerobic sludge fermentation, as it could enhance organic matter availability, suppress competing microorganisms and furnish EA by providing acetate. However, such a hypothesis has rarely been proved. Here we reveal that PAA-based pretreatment leads to significant exfoliation of extracellular polymeric substances (EPS) from sludge flocs and disruption of proteinic secondary structures, through inducing highly active free radicals and singlet oxygen. The production of MCFAs increases substantially to 11,265.6 mg COD L−1, while the undesired byproducts, specifically long-chain alcohols (LCAs), decrease to 723.5 mg COD L−1. Microbial activity tests further demonstrate that PAA pretreatment stimulates the CE process, attributed to the up-regulation of functional genes involved in fatty acid biosynthesis pathway. These comprehensive findings provide insights into the effectiveness and mechanisms behind enhanced MCFAs production through PAA-based technology, advancing our understanding of sustainable resource recovery from sewage sludge. [Display omitted] •Peracetic acid (PAA) can boost sludge disruption and provide electron acceptors.•Medium-chain fatty acids (MCFAs) are promoted to 11,265.6 mg COD L−1 by PAA.•Free radicals and singlet oxygen are the reactive species for PAA oxidation.•PAA promotes protein-like substrate hydrolysis and chain elongation.•PAA induces profitable microbial communities and metabolic pathways.
ISSN:2666-4984
2096-9643
2666-4984
DOI:10.1016/j.ese.2023.100355