On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States
Starting from the fact that monocomponent adsorption, whether modeled by Lagergren or nonlinear Riccati equation, does not sustain oscillations, we speculate about the nature of multiple steady state states in multicomponent adsorption with second-order kinetics and about the possibility that multic...
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doaj-149997e880c141da8d7c6f85d002b3eb2021-07-02T18:02:59ZengHindawi LimitedAdvances in Mathematical Physics1687-91201687-91392019-01-01201910.1155/2019/76876437687643On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary StatesOlga M. Jakšić0Zoran Jakšić1Milena B. Rašljić2Ljiljana Z. Kolar-Anić3Centre of Microelectronic Technologies, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Njegoševa 12, Belgrade, SerbiaCentre of Microelectronic Technologies, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Njegoševa 12, Belgrade, SerbiaCentre of Microelectronic Technologies, Institute of Chemistry, Technology and Metallurgy, University of Belgrade, Njegoševa 12, Belgrade, SerbiaFaculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, SerbiaStarting from the fact that monocomponent adsorption, whether modeled by Lagergren or nonlinear Riccati equation, does not sustain oscillations, we speculate about the nature of multiple steady state states in multicomponent adsorption with second-order kinetics and about the possibility that multicomponent adsorption might exhibit oscillating behavior, in order to provide a tool for better discerning possible oscillations from inevitable fluctuations in experimental results or a tool for a better control of adsorption process far from equilibrium. We perform an analysis of stability of binary adsorption with second-order kinetics in multiple ways. We address perturbations around the steady state analytically, first in a classical way, then by introducing Langevin forces and analyzing the reaction flux and cross-correlations, then by applying the stochastic chemical master equation approach, and finally, numerically, by using stochastic simulation algorithms. Our results show that stationary states in this model are stable nodes. Hence, experimental results with purported oscillations in response should be addressed from the point of view of fluctuations and noise analysis.http://dx.doi.org/10.1155/2019/7687643 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Olga M. Jakšić Zoran Jakšić Milena B. Rašljić Ljiljana Z. Kolar-Anić |
spellingShingle |
Olga M. Jakšić Zoran Jakšić Milena B. Rašljić Ljiljana Z. Kolar-Anić On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States Advances in Mathematical Physics |
author_facet |
Olga M. Jakšić Zoran Jakšić Milena B. Rašljić Ljiljana Z. Kolar-Anić |
author_sort |
Olga M. Jakšić |
title |
On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States |
title_short |
On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States |
title_full |
On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States |
title_fullStr |
On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States |
title_full_unstemmed |
On Oscillations and Noise in Multicomponent Adsorption: The Nature of Multiple Stationary States |
title_sort |
on oscillations and noise in multicomponent adsorption: the nature of multiple stationary states |
publisher |
Hindawi Limited |
series |
Advances in Mathematical Physics |
issn |
1687-9120 1687-9139 |
publishDate |
2019-01-01 |
description |
Starting from the fact that monocomponent adsorption, whether modeled by Lagergren or nonlinear Riccati equation, does not sustain oscillations, we speculate about the nature of multiple steady state states in multicomponent adsorption with second-order kinetics and about the possibility that multicomponent adsorption might exhibit oscillating behavior, in order to provide a tool for better discerning possible oscillations from inevitable fluctuations in experimental results or a tool for a better control of adsorption process far from equilibrium. We perform an analysis of stability of binary adsorption with second-order kinetics in multiple ways. We address perturbations around the steady state analytically, first in a classical way, then by introducing Langevin forces and analyzing the reaction flux and cross-correlations, then by applying the stochastic chemical master equation approach, and finally, numerically, by using stochastic simulation algorithms. Our results show that stationary states in this model are stable nodes. Hence, experimental results with purported oscillations in response should be addressed from the point of view of fluctuations and noise analysis. |
url |
http://dx.doi.org/10.1155/2019/7687643 |
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