In this research, we expose new results on the dynamics of a high disturbed chemostat model for industrial wastewater. Due to the complexity of heavy and erratic environmental variations, we take into consideration the polynomial perturbation. We scout the asymptotic characterization of our proposed system with a general interference response. It is demonstrated that the long-run characteristics of the chemostat process are classified by using the threshold classification approach. If the critical sill is strictly negative, the bacteria will disappear exponentially, indicating that the chemostat wastewater process is not running (excluded scenario), otherwise, the stationarity and ergodicity properties of our model are verified (practical s...
We propose a novel impulsive chemostat model with the substrate concentration as the basis for the i...
In this paper, we analyze a chemostat model with wall growth where the input flow is perturbed by tw...
International audienceWe study the chemostat model for one species competing for one nutrient using ...
This research aims to highlight and examine an example of physical complexity. By taking into accoun...
The stochastic dynamics of a chemostat with three trophic levels, substrate-bacterium-worm, is analy...
We revisit the chemostat model with Haldane growth function, here subject to bounded random disturba...
This paper intends to develop a new method to obtain the threshold of an impulsive stochastic chemos...
Abstract In this paper, we propose a multi-nutrient and single microorganism chemostat model with st...
International audienceIn this work we deal with a wastewater treatment by using the activated sludge...
This paper proposes a novel impulsive stochastic nonautonomous chemostat model with the saturated an...
Chemostat model with pulsed input in a polluted environment is considered. By using the Floquet theo...
We present a stochastic simple chemostat model in which the dilution rate was influenced by white no...
In this work, the simplest chemostat model, perturbing the input flow by means of the Ornstein-Uhlen...
In this paper, a mathematical model for microbial treatment in livestock and poultry sewage is propo...
Abstract. The effect of toxicants on ecological systems is an important issue from mathematical and ...
We propose a novel impulsive chemostat model with the substrate concentration as the basis for the i...
In this paper, we analyze a chemostat model with wall growth where the input flow is perturbed by tw...
International audienceWe study the chemostat model for one species competing for one nutrient using ...
This research aims to highlight and examine an example of physical complexity. By taking into accoun...
The stochastic dynamics of a chemostat with three trophic levels, substrate-bacterium-worm, is analy...
We revisit the chemostat model with Haldane growth function, here subject to bounded random disturba...
This paper intends to develop a new method to obtain the threshold of an impulsive stochastic chemos...
Abstract In this paper, we propose a multi-nutrient and single microorganism chemostat model with st...
International audienceIn this work we deal with a wastewater treatment by using the activated sludge...
This paper proposes a novel impulsive stochastic nonautonomous chemostat model with the saturated an...
Chemostat model with pulsed input in a polluted environment is considered. By using the Floquet theo...
We present a stochastic simple chemostat model in which the dilution rate was influenced by white no...
In this work, the simplest chemostat model, perturbing the input flow by means of the Ornstein-Uhlen...
In this paper, a mathematical model for microbial treatment in livestock and poultry sewage is propo...
Abstract. The effect of toxicants on ecological systems is an important issue from mathematical and ...
We propose a novel impulsive chemostat model with the substrate concentration as the basis for the i...
In this paper, we analyze a chemostat model with wall growth where the input flow is perturbed by tw...
International audienceWe study the chemostat model for one species competing for one nutrient using ...