Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Molecular Mechanism for Azeotrope Formation in Ethanol/benzene Binary Mixtures Through Gibbs Ensemble Monte Carlo Simulation

View through CrossRef
Azeotropes have been studied for decades due to the challenges they impose on separation processes but fundamental understanding at the molecular level remains limited. Although molecular simulation has demonstrated its capability of predicting mixture vapor-liquid equilibrium (VLE) behaviors, including azeotropes, its potential for mechanistic investigation has not been fully exploited. In this study, we use the united atom transferable potentials for phase equilibria (TraPPE-UA) force-field to model the ethanol/benzene mixture, which displays a positive azeotrope. Gibbs ensemble Monte Carlo (GEMC) simulation is performed to predict the VLE phase diagram, including an azeotrope point. The results accurately agree with experimental measurements. We argue that the molecular mechanism of azeotrope formation cannot be fully understood by studying the mixture liquid-state stability at the azeotrope point alone. Rather, azeotrope occurrence is only a reflection of the changing relative volatility between the two components over a much wider composition range. A thermodynamic criterion is thus proposed based on the comparison of partial excess Gibbs energy between the components. In the ethanol/benzene system, molecular energetics shows that with increasing ethanol mole fraction, its volatility initially decreases but later plateaus, while benzene volatility is initially nearly constant and only starts to decrease when its mole fraction is low. Analysis of the mixture liquid structure, including a detailed investigation of ethanol hydrogen-bonding configurations at different composition levels, reveals the underlying molecular mechanism for the changing volatilities responsible for the azeotrope.
Title: A Molecular Mechanism for Azeotrope Formation in Ethanol/benzene Binary Mixtures Through Gibbs Ensemble Monte Carlo Simulation
Description:
Azeotropes have been studied for decades due to the challenges they impose on separation processes but fundamental understanding at the molecular level remains limited.
Although molecular simulation has demonstrated its capability of predicting mixture vapor-liquid equilibrium (VLE) behaviors, including azeotropes, its potential for mechanistic investigation has not been fully exploited.
In this study, we use the united atom transferable potentials for phase equilibria (TraPPE-UA) force-field to model the ethanol/benzene mixture, which displays a positive azeotrope.
Gibbs ensemble Monte Carlo (GEMC) simulation is performed to predict the VLE phase diagram, including an azeotrope point.
The results accurately agree with experimental measurements.
We argue that the molecular mechanism of azeotrope formation cannot be fully understood by studying the mixture liquid-state stability at the azeotrope point alone.
Rather, azeotrope occurrence is only a reflection of the changing relative volatility between the two components over a much wider composition range.
A thermodynamic criterion is thus proposed based on the comparison of partial excess Gibbs energy between the components.
In the ethanol/benzene system, molecular energetics shows that with increasing ethanol mole fraction, its volatility initially decreases but later plateaus, while benzene volatility is initially nearly constant and only starts to decrease when its mole fraction is low.
Analysis of the mixture liquid structure, including a detailed investigation of ethanol hydrogen-bonding configurations at different composition levels, reveals the underlying molecular mechanism for the changing volatilities responsible for the azeotrope.

Related Results

Monte Carlo Simulation of an Ethanol Pharmacokinetic Model
Monte Carlo Simulation of an Ethanol Pharmacokinetic Model
Background One challenge of using even relatively simple pharmacokinetic models is valuation of model parameters. Unknown model parameter values can be determined by fitting the mo...
Synthesis, characterization and application of novel ionic liquids
Synthesis, characterization and application of novel ionic liquids
Ionic liquids (ILs) or molten salts at room temperature presently experience significant attention in many areas of chemistry. The most attractive property is the “tenability” of t...
Monte Carlo methods: barrier option pricing with stable Greeks and multilevel Monte Carlo learning
Monte Carlo methods: barrier option pricing with stable Greeks and multilevel Monte Carlo learning
For discretely observed barrier options, there exists no closed solution under the Black-Scholes model. Thus, it is often helpful to use Monte Carlo simulations, which are easily a...
Separation processes for high purity ethanol production
Separation processes for high purity ethanol production
Globally there is renewed interest in the production of alternate fuels in the form of bioethanol and biodiesel. This is mainly due to the realization that crude oil stocks are lim...
Competitive Indices in Cereal and Legume Mixtures in a South Asian Environment
Competitive Indices in Cereal and Legume Mixtures in a South Asian Environment
Core Ideas Cereal‐legume binary mixtures increased forage productivity per unit area compared to cereal‐cereal and legume‐legume binary mixtures. In binary mixtures, pearl millet w...
The acute pulmonary toxicity in mice induced by multiwall carbon nanotubes, benzene, and their combination
The acute pulmonary toxicity in mice induced by multiwall carbon nanotubes, benzene, and their combination
AbstractCarbon nanotubes (CNTs) have been synthesized and produced on large scale for their wide application. They have high absorption ability to organic contaminants (such as ben...
Analysis of characteristics of workers with occupational benzene poisoning in Jiangsu province,2006-2018
Analysis of characteristics of workers with occupational benzene poisoning in Jiangsu province,2006-2018
Abstract Objective To investigate the characteristics of workers with occupational benzene poisoning in Jiangsu Province during 2006-2018, find out the susceptible populati...
Research on Multi-Group Monte Carlo Calculations Based on Group Constants Generated by RMC
Research on Multi-Group Monte Carlo Calculations Based on Group Constants Generated by RMC
Abstract Nowadays, deterministic two-step or Monte Carlo methods are commonly used in core physics calculations. However, with the development of reactor core design, tradi...

Back to Top