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PMID: 21339067 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

An integrated physical and biological model for anaerobic lagoons.

Bioresource technology ·Vol. 102 ·No. 8 ·2011-04-00 ·Pages 5032-8

Wu B, Chen Z

Abstract

A computational fluid dynamics (CFD) model that integrates physical and biological processes for anaerobic lagoons is presented. In the model development, turbulence is represented using a transition k-ω model, heat conduction and solar radiation are included in the thermal model, biological oxygen demand (BOD) reduction is characterized by first-order kinetics, and methane yield rate is expressed as a linear function of temperature. A test of the model applicability is conducted in a covered lagoon digester operated under tropical climate conditions. The commercial CFD software, ANSYS-Fluent, is employed to solve the integrated model. The simulation procedures include solving fluid flow and heat transfer, predicting local resident time based on the converged flow fields, and calculating the BOD reduction and methane production. The simulated results show that monthly methane production varies insignificantly, but the time to achieve a 99% BOD reduction in January is much longer than that in July.

MeSH Terms
Anaerobiosis Methane/metabolism Models, Biological Temperature Water Movements Water Pollutants/metabolism
Chemicals
Water Pollutants Methane
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wu Binxin
Philadelphia Mixing Solutions Ltd, Palmyra, PA 17078, USA. [email protected]
Chen Zhenbin
Article Info
Journal
Bioresource technology
Abbr.
Bioresour Technol
ISSN
1873-2976
Published
2011-04-00
Epub
2011-00-02
Pages
5032-8
Language
English
Region
England
NLM ID
9889523
Subset
IM
Analysis Services
Analysis Services

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