Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition

A scientifically sound method for calculating the parameters of bio-cleaning should contain as a basic a reliable mathematical description of the stationary process. The results of stationary laboratory experiments are presented in the coordinates “specific rate of destruction V – concentration ρ”....

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Main Authors: Ganna Bakharieva, Serhii Petrov, Tetiana Falalieieva
Format: Article
Language:English
Published: Scientific Route OÜ 2018-11-01
Series:Technology Transfer: Fundamental Principles and Innovative Technical Solutions
Subjects:
Online Access:http://eu-jr.eu/ttfpits/article/view/753
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spelling doaj-940b76d191ae4ca9a93049770e0db4fb2020-11-25T03:11:28ZengScientific Route OÜTechnology Transfer: Fundamental Principles and Innovative Technical Solutions2585-68392585-68472018-11-012262910.21303/2585-6847.2018.00753Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibitionGanna Bakharieva0Serhii Petrov1Tetiana Falalieieva2National technical university «Kharkiv polytechnic institute»National technical university «Kharkiv polytechnic institute»National technical university «Kharkiv polytechnic institute»A scientifically sound method for calculating the parameters of bio-cleaning should contain as a basic a reliable mathematical description of the stationary process. The results of stationary laboratory experiments are presented in the coordinates “specific rate of destruction V – concentration ρ”. Statistical processing proves the presence of substrate inhibition for both gaseous and soluble and dissolved harmful substances in water. For an analytical description of the dependence of the biooxidation rate on the concentration of contaminants, a phenomenological approach is applied, taking into account in a simple form two obvious phenomena: the contact of a microorganism with a substrate molecule and the inhibitory effect of the medium on it. The numerical values of empirical dependency coefficients for the studied processes are calculated. A differential equation is proposed at the macro level that describes the kinetics of biochemical destruction. The concept of a macrokinetic mathematical model of bioremediation is defined as a system of two functions that quantitatively reflect the dependence of the specific oxidation rate of pollution on its concentration and concentration on time, as well as satisfying the relationship between the relationships of the same parameters in differential form. The dependence of concentration on time is defined both in the form of a numerical integration algorithm and in the form of an approximate formula. The adequacy and universality of the proposed model for the studied processes is proved. The advantage of the proposed model of substrate inhibition kinetics is the simplicity of the structure of the basic formula and the ease of determining empirical coefficients based on this. In addition to numerical integration for determining the time of destruction, an approximate analytical solution is found, which can be adequately used in the concentration range of the experimental study. Further research is aimed at developing methods for calculating non-stationary processes in biochemical purification plants of certain specific typeshttp://eu-jr.eu/ttfpits/article/view/753biochemical destructionsubstrate inhibitionphenomenological approachmacrokinetic modelspecific oxidation ratepollution concentration
collection DOAJ
language English
format Article
sources DOAJ
author Ganna Bakharieva
Serhii Petrov
Tetiana Falalieieva
spellingShingle Ganna Bakharieva
Serhii Petrov
Tetiana Falalieieva
Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
Technology Transfer: Fundamental Principles and Innovative Technical Solutions
biochemical destruction
substrate inhibition
phenomenological approach
macrokinetic model
specific oxidation rate
pollution concentration
author_facet Ganna Bakharieva
Serhii Petrov
Tetiana Falalieieva
author_sort Ganna Bakharieva
title Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
title_short Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
title_full Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
title_fullStr Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
title_full_unstemmed Development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
title_sort development of the mathematical model of the kinetics of the stationary process of bio-cleaning with substratic inhibition
publisher Scientific Route OÜ
series Technology Transfer: Fundamental Principles and Innovative Technical Solutions
issn 2585-6839
2585-6847
publishDate 2018-11-01
description A scientifically sound method for calculating the parameters of bio-cleaning should contain as a basic a reliable mathematical description of the stationary process. The results of stationary laboratory experiments are presented in the coordinates “specific rate of destruction V – concentration ρ”. Statistical processing proves the presence of substrate inhibition for both gaseous and soluble and dissolved harmful substances in water. For an analytical description of the dependence of the biooxidation rate on the concentration of contaminants, a phenomenological approach is applied, taking into account in a simple form two obvious phenomena: the contact of a microorganism with a substrate molecule and the inhibitory effect of the medium on it. The numerical values of empirical dependency coefficients for the studied processes are calculated. A differential equation is proposed at the macro level that describes the kinetics of biochemical destruction. The concept of a macrokinetic mathematical model of bioremediation is defined as a system of two functions that quantitatively reflect the dependence of the specific oxidation rate of pollution on its concentration and concentration on time, as well as satisfying the relationship between the relationships of the same parameters in differential form. The dependence of concentration on time is defined both in the form of a numerical integration algorithm and in the form of an approximate formula. The adequacy and universality of the proposed model for the studied processes is proved. The advantage of the proposed model of substrate inhibition kinetics is the simplicity of the structure of the basic formula and the ease of determining empirical coefficients based on this. In addition to numerical integration for determining the time of destruction, an approximate analytical solution is found, which can be adequately used in the concentration range of the experimental study. Further research is aimed at developing methods for calculating non-stationary processes in biochemical purification plants of certain specific types
topic biochemical destruction
substrate inhibition
phenomenological approach
macrokinetic model
specific oxidation rate
pollution concentration
url http://eu-jr.eu/ttfpits/article/view/753
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AT serhiipetrov developmentofthemathematicalmodelofthekineticsofthestationaryprocessofbiocleaningwithsubstraticinhibition
AT tetianafalalieieva developmentofthemathematicalmodelofthekineticsofthestationaryprocessofbiocleaningwithsubstraticinhibition
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