Literature DB >> 27420808

Mesophilic and thermophilic alkaline fermentation of waste activated sludge for hydrogen production: Focusing on homoacetogenesis.

Jingjing Wan1, Yuhang Jing1, Shicheng Zhang1, Irini Angelidaki2, Gang Luo3.   

Abstract

The present study compared the mesophilic and thermophilic alkaline fermentation of waste activated sludge (WAS) for hydrogen production with focus on homoacetogenesis, which mediated the consumption of H2 and CO2 for acetate production. Batch experiments showed that hydrogen yield of WAS increased from 19.2 mL H2/gVSS at 37 °C and pH 10-80.1 mL H2/gVSS at 55 °C and pH 10. However, the production of volatile fatty acids (mainly acetate) was higher at 37 °C and pH 10 by comparison with 55 °C and pH 10. Hydrogen consumption due to homoacetogenesis was observed at 37 °C and pH 10 but not 55 °C and pH 10. Higher expression levels of genes relating with homoacetogenesis and lower expression levels of genes relating with hydrogen production were found at 37 °C and pH 10 compared to 55 °C and pH 10. The continuous experiment demonstrated the steady-state hydrogen yield of WAS was comparable to that obtained from batch experiments at 55 °C and pH 10, and homoacetogenesis was still inhibited. However, the steady-state hydrogen yield of WAS (6.5 mL H2/gVSS) was much lower than that (19.2 mL H2/gVSS) obtained from batch experiments at 37 °C and pH 10 due to the gradual enrichment of homoacetogens as demonstrated by qPCR analysis. The high-throughput sequencing analysis of 16S rRNA genes showed that the abundance of genus Clostridium, containing several homoacetogens, was 5 times higher at 37 °C and pH 10 than 55 °C and pH 10.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Alkaline fermentation; Fermentative hydrogen production; Homoacetoogenesis; Mesophilic; Thermophilic; Waste activated sludge

Mesh:

Substances:

Year:  2016        PMID: 27420808     DOI: 10.1016/j.watres.2016.07.002

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  4 in total

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Journal:  Appl Environ Microbiol       Date:  2018-03-01       Impact factor: 4.792

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Journal:  ACS Omega       Date:  2022-03-21

4.  Microbial insights of enhanced anaerobic conversion of syngas into volatile fatty acids by co-fermentation with carbohydrate-rich synthetic wastewater.

Authors:  Chao Liu; Wen Wang; Sompong O-Thong; Ziyi Yang; Shicheng Zhang; Guangqing Liu; Gang Luo
Journal:  Biotechnol Biofuels       Date:  2020-03-16       Impact factor: 6.040

  4 in total

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