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Minimizing mixing intensity to improve the performance of rice straw anaerobic digestion via enhanced development of microbe-substrate aggregates

Cited 37 time in Web of Science Cited 40 time in Scopus
Authors

Kim, Moonkyung; Kim, Byung-Chul; Choi, Yongju; Nam, Kyoung Phile

Issue Date
2017-12
Publisher
Elsevier BV
Citation
Bioresource Technology, Vol.245, pp.590-597
Abstract
The aim of this work was to study the effect of the differential development of microbe-substrate aggregates at different mixing intensities on the performance of anaerobic digestion of rice straw. Batch and semi-continuous reactors were operated for up to 50 and 300 days, respectively, under different mixing intensities. In both batch and semi-continuous reactors, minimal mixing conditions exhibited maximum methane production and lignocellulose biodegradability, which both had strong correlations with the development of microbe-substrate aggregates. The results implied that the aggregated microorganisms on the particulate substrate played a key role in rice straw hydrolysis, determining the performance of anaerobic digestion. Increasing the mixing speed from 50 to 150 rpm significantly reduced the methane production rate by disintegrating the microbe-substrate aggregates in the semi-continuous reactor. A temporary stress of high-speed mixing fundamentally affected the microbial communities, increasing the possibility of chronic reactor failure.
ISSN
0960-8524
URI
https://hdl.handle.net/10371/206595
DOI
https://doi.org/10.1016/j.biortech.2017.09.006
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  • College of Engineering
  • Department of Civil & Environmental Engineering
Research Area 지하수 및 토양오염, 환경공학

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