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Excess Enthalpies Analysis of Biofuel Components: Sunflower Oil-Alcohols Systems.


ABSTRACT: This study addresses the pressing issues of energy production and consumption, in line with global sustainable development goals. Focusing on the potential of alcohols as "green" alternatives to traditional fossil fuels, especially in biofuel applications, we investigate the thermochemical properties of three alcohols (n-propanol, n-butanol, n-pentanol) blended with sunflower oil. The calorimetric analysis allows for the experimental determination of excess enthalpies in pseudo-binary mixtures at 303.15 K, revealing similarities in the trends of the curves (dependence on concentrations) but with different values for the excess enthalpies for each mixture. Despite the structural differences of the alcohols studied, the molar excess enthalpy values exhibit uniformity, suggesting consistent mixing behavior. The peak values of excess enthalpies for systems with sunflower oil and n-propanol, n-butanol and n-pentanol are, respectively, 3255.2 J/mole, 3297.4 J/mole and 3150.1 J/mole. Both the NRTL and Redlich-Kister equations show satisfactory agreement with the obtained values.

SUBMITTER: Golikova A 

PROVIDER: S-EPMC10970517 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Excess Enthalpies Analysis of Biofuel Components: Sunflower Oil-Alcohols Systems.

Golikova Alexandra A   Shasherina Anna A   Anufrikov Yuri Y   Misikov Georgii G   Kuzmenko Petr P   Smirnov Alexander A   Toikka Maria M   Toikka Alexander A  

International journal of molecular sciences 20240313 6


This study addresses the pressing issues of energy production and consumption, in line with global sustainable development goals. Focusing on the potential of alcohols as "green" alternatives to traditional fossil fuels, especially in biofuel applications, we investigate the thermochemical properties of three alcohols (n-propanol, n-butanol, n-pentanol) blended with sunflower oil. The calorimetric analysis allows for the experimental determination of excess enthalpies in pseudo-binary mixtures a  ...[more]

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