Literature DB >> 26386958

Thermodynamic analysis of fuels in gas phase: ethanol, gasoline and ethanol - gasoline predicted by DFT method.

A F G Neto1,2, F S Lopes3, E V Carvalho3, M N Huda4, A M J C Neto3, N T Machado5.   

Abstract

This paper presents a theoretical study using density functional theory to calculate thermodynamics properties of major molecules compounds at gas phase of fuels like gasoline, ethanol, and gasoline-ethanol mixture in thermal equilibrium on temperature range up to 1500 K. We simulated a composition of gasoline mixture with ethanol for a thorough study of thermal energy, enthalpy, Gibbs free energy, entropy, heat capacity at constant pressure with respect to temperature in order to study the influence caused by ethanol as an additive to gasoline. We used semi-empirical computational methods as well in order to know the efficiency of other methods to simulate fuels through this methodology. In addition, the ethanol influence through the changes in percentage fractions of chemical energy released in combustion reaction and the variations on thermal properties for autoignition temperatures of fuels was analyzed. We verified how ethanol reduces the chemical energy released by gasoline combustion and how at low temperatures the gas phase fuels in thermal equilibrium have similar thermodynamic behavior. Theoretical results were compared with experimental data, when available, and showed agreement. Graphical Abstract Thermodynamic analysis of fuels in gas phase.

Entities:  

Keywords:  DFT; Ethanol; Gasoline; Semi-empirical methods; Thermodynamics properties

Mesh:

Substances:

Year:  2015        PMID: 26386958     DOI: 10.1007/s00894-015-2815-x

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  12 in total

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Journal:  J Mol Model       Date:  2011-05-04       Impact factor: 1.810

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9.  Injection, transport, absorption and phosphorescence properties of a series of platinum (II) complexes with N-heterocyclic carbenes: a DFT and time-dependent DFT study.

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Journal:  J Mol Model       Date:  2014-09-17       Impact factor: 1.810

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  3 in total

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Authors:  Marcelo Gonçalves Martins; Tiago da Silva Arouche; Abel Ferreira Gomes Neto; Jorddy Neves da Cruz; Fabio Luiz Paranhos da Costa; Lindemberg Lima Fernandes; Raul Nunes de Carvalho Junior; José Francisco da Silva Costa; Antonio Maia de Jesus Chaves Neto
Journal:  J Mol Model       Date:  2021-02-11       Impact factor: 1.810

3.  Thermodynamics study of biokerosene from coconut and palm kernel oils and JP-8 aircraft fuels in the gas phase by the DFT method.

Authors:  Edimilson S Moraes; Gustavo F Reis; Jorddy Cruz; Klaus Cozzolino; Abel F G Neto; Tarciso Andrade-Filho; Antonio M J C Neto
Journal:  J Mol Model       Date:  2020-03-16       Impact factor: 1.810

  3 in total

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