AbstractWe consider an ecological model for biodegradation of toxic substances in aquatic and atmospheric biotic systems. The model, which is described by a nonlinear system of four ordinary differential equations, is known to be experimentally validated. We compute the equilibrium points of the model and study their asymptotic stability. Basic properties of the solutions like uniform boundedness and uniform persistence are established. Global asymptotic results are also developed. Numerical simulation results are presented to demonstrate the theoretical studies
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In-situ bioremediation is a promising biotechnology for removing aqueous phase contaminants from gro...
AbstractWe consider an ecological model for biodegradation of toxic substances in aquatic and atmosp...
This paper proposes to extend the dynamical analysis results on chemical tubular reactors presented ...
In this work, we present an asymptotic analysis of a coupled system of two advection-diffusion-react...
We propose a mathematical model for phenol and p-cresol mixture degradation in a continuously stirre...
In this work, we present an asymptotic analysis of a coupled system of two advection-diffusion-reac...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
This paper proposes to extend the dynamical analysis results on chemical tubular reactors presented ...
International audienceWe describe microbial growth and production of value-added chemical compounds ...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In this paper we consider a mathematical continuous-time model for biodegradation of phenol in the p...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In-situ bioremediation is a promising biotechnology for removing aqueous phase contaminants from gro...
AbstractWe consider an ecological model for biodegradation of toxic substances in aquatic and atmosp...
This paper proposes to extend the dynamical analysis results on chemical tubular reactors presented ...
In this work, we present an asymptotic analysis of a coupled system of two advection-diffusion-react...
We propose a mathematical model for phenol and p-cresol mixture degradation in a continuously stirre...
In this work, we present an asymptotic analysis of a coupled system of two advection-diffusion-reac...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
We describe microbial growth and production of value-added chemical compounds in a continuous biorea...
This paper proposes to extend the dynamical analysis results on chemical tubular reactors presented ...
International audienceWe describe microbial growth and production of value-added chemical compounds ...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In this paper we consider a mathematical continuous-time model for biodegradation of phenol in the p...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In this paper we introduce a non-linear model for the biodegradation of organic pollutants in a wate...
In-situ bioremediation is a promising biotechnology for removing aqueous phase contaminants from gro...