Kinetics and Thermodynamics of Oil Extraction fromJatropha curcasL. Using Ethanol as a Solvent

Author:

Santos Silmara Bispo dos1,Martins Marcio Arêdes2,Caneschi Ana Lívia3,Aguilar Paulo Rafael Morette4,Coimbra Jane Sélia dos Reis5

Affiliation:

1. Mechanical Engineering Department, Universidade Federal de Mato Grosso (UFMT), Rodovia MT-270, Km 06, s/n, Campus Rondonópolis, 78735-901 Rondonópolis, MT, Brazil

2. Agricultural Engineering Department, Universidade Federal de Viçosa (UFV), Avenida Peter Henry Rolfs, s/n, Campus Viçosa, 36570-000 Viçosa, MG, Brazil

3. Chemical Engineering, LafargeHolcim, Rodovia MG 170, s/n, Km 4, 35588-000 Arcos, MG, Brazil

4. Agricultural and Ambiental Engineering, Bram Offshore, Rua da Quitanda, 86/Sala 401, Centro, 20091-005 Rio de Janeiro, RJ, Brazil

5. Food Technology Department, Universidade Federal de Viçosa (UFV), Avenida Peter Henry Rolfs, s/n, Campus Viçosa, 36570-000 Viçosa, MG, Brazil

Abstract

In the study the yield and kinetic and thermodynamic parameters of the oil extraction process fromJatropha curcasL. using ethanol as a solvent were evaluated for different temperatures, moisture contents of the solid phase, and particle sizes. The extraction process yield increased with contact time of solid particles with the solvent until reaching equilibrium (saturation of the solvent), for all the temperatures, moisture contents, and average particle sizes. These parameters significantly influenced (95% confidence) the extracted oil yield. A convective mass transfer model was used to simulate the extraction process and estimate the kinetic and thermodynamic parameters. For all conditions evaluated, values of oil yield in the liquid phase close to equilibrium were obtained in approximately 20 min. The variations of enthalpy and entropy were positive, indicating that the process is endothermic and irreversible. Values obtained for the variation in Gibbs free energy showed that the extraction process using ethanol as a solvent is spontaneous and thermodynamically favorable for the moisture content of 0%, where the smaller the average particle size the greater the spontaneity of the process.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Hindawi Limited

Subject

General Chemical Engineering

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