2019
DOI: 10.3934/mbe.2019004
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Growth on two limiting essential resources in a self-cycling fermentor

Abstract: A system of impulsive differential equations with state-dependent impulses is used to model the growth of a single population on two limiting essential resources in a self-cycling fermentor. Potential applications include water purification and biological waste remediation. The self-cycling fermentation process is a semi-batch process and the model is an example of a hybrid system. In this case, a well-stirred tank is partially drained, and subsequently refilled using fresh medium when the concentration of bot… Show more

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Cited by 2 publications
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References 18 publications
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