Literature DB >> 22565280

Integration of mixing, heat transfer, and biochemical reaction kinetics in anaerobic methane fermentation.

Binxin Wu1.   

Abstract

An extensive investigation of anaerobic methane fermentation requires identifying the relationship between the physical environment and biological process. In this study, a computational fluid dynamics (CFD) technique was used to characterize bacterial fermentation mechanisms intertwined with mixing and heat transfer in anaerobic digesters. The results demonstrate that the methane yield remains almost unchanged while the energy efficiency decreases with increasing mixing power in a complete-mix digester, and that the energy output increases nonlinearly with the increase in heating energy in a plug-flow digester. The CFD method can be applied to other bioreactors to gain valuable insights into their behavior as well. Integrating flow and temperature with kinetic behavior for anaerobic digestion not only solves the controversy about how mixing influences the digestive process, but also assists in optimizing the digester design and increasing the efficiency of energy conversion, and additionally, provides a reference for improving the mixing guidelines recommended by the U.S. Environmental Protection Agency.
Copyright © 2012 Wiley Periodicals, Inc.

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Year:  2012        PMID: 22565280     DOI: 10.1002/bit.24551

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  2 in total

1.  Heat-transfer performance of twisted tubes for highly viscous food waste slurry from biogas plants.

Authors:  Jingjing Chen; Mikael Risberg; Lars Westerlund; Urban Jansson; Changsong Wang; Xiaohua Lu; Xiaoyan Ji
Journal:  Biotechnol Biofuels Bioprod       Date:  2022-07-06

2.  Physico-chemical pretreatment and fungal biotreatment for park wastes and cattle dung for biogas production.

Authors:  Sameh S Ali; Jianzhong Sun
Journal:  Springerplus       Date:  2015-11-20
  2 in total

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