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Originally published as Biophys J. BioFAST on May 11, 2007.
doi:10.1529/biophysj.106.103507
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Biophysical Journal 93:787-794 (2007)
© 2007 The Biophysical Society

Development of Linear Irreversible Thermodynamic Model for Oxidation Reduction Potential in Environmental Microbial System

Hong-Bang Cheng, Mathava Kumar and Jih-Gaw Lin *

* Institute of Environmental Engineering, National Chiao Tung University, Hsinchu City, Taiwan

Correspondence: Address reprint requests to Jih-Gaw Lin, Tel.: 886-3-5722681; Fax: 886-3-5725958; E-mail: jglin{at}mail.nctu.edu.tw.

Nernst equation has been directly used to formulate the oxidation reduction potential (ORP) of reversible thermodynamic conditions but applied to irreversible conditions after several assumptions and/or modifications. However, the assumptions are sometimes inappropriate in the quantification of ORP in nonequilibrium system. We propose a linear nonequilibrium thermodynamic model, called microbial related reduction and oxidation reaction (MIRROR Model No. 1) for the interpretation of ORP in biological process. The ORP was related to the affinities of catabolism and anabolism. The energy expenditure of catabolism and anabolism was directly proportional to overpotential ({eta}), straight coefficient of electrode (LEE), and degree of coupling between catabolism and ORP electrode, respectively. Finally, the limitations of MIRROR Model No. 1 were discussed for expanding the applicability of the model.







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Copyright © 2007 by the Biophysical Society.