thermodynamic and statistical analysis of soybean oil
Thermodynamic and statistical analysis of soybean oil extraction
The main goal of this work was to evaluate thermodynamic parameters of the soybean oil extraction process using ethanol as solvent. The experimental treatments were as followsaqueous solvents with water contents varying from 0 to 13% (mass basis) and extraction temperature varying from 50 to 100 °C.
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Thermodynamic and statistical analysis of soybean oil extraction process using renewable solvent Article in International Journal of Food Science & Technology 45(11):2407 - 2414 · November 2010
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C. E. C. Rodrigues, K. K. Aracava, and F. N. Abreu, “Thermodynamic and statistical analysis of soybean oil extraction process using renewable solvent,” International Journal of Food Science and Technology, vol. 45, no. 11, pp. 2407–2414, 2010. View at Publisher · View at Google Scholar · View at Scopus
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Process parameters including reaction temperature, molar ratio of methanol to soybean oil, and catalyst amount (mass percent of CH 3 ONa to soybean oil) were discussed. Besides, the kinetic and thermodynamic study of the integrated process were also conducted. 2. Experimental section 2.1. Materials and methods
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As expected, the temperature had a positive influence on the reaction rate for all vegetable oils studied. Based on the rate constants and activation energies obtained, the reaction rates followed the sequencecastor oil > jatropha oil > tobacco oil > pongamia oil > soybean oil > jojoba wax-oil.
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A First Law Thermodynamic Analysis of Biodiesel Production From Soybean. and the soybean oil is not counted as a major energy input, but it is. The thermodynamic parameters of the oil
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The negative effect of water in the presence of ethanol on the solubility of soybean oil was reported by Magne and Skau [19] and Rao et al. [20]. These authors found that the soybean oil is virtually insoluble, even at its boiling temperature in an ethanol solution with concentration less than 85% (15% water).
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A First Law Thermodynamic Analysis of Biodiesel Production From Soybean Tad W. Patzek Department of Petroleum and Geosystems Engineering The University of Texas at Austin, TX 78712 [email protected] April 13, 2009 Abstract A proper First Law energy balance of the soybean biodiesel cycle shows that the overall efficiency of biodiesel production is 0.18, i.e., only 1 in 5 parts of
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A proper First Law energy balance of the soybean biodiesel cycle shows that the overall efficiency of biodiesel production is 0.18, i.e., only 1 in 5 parts of the solar energy sequestered as soya b...
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This paper presents an experimental and thermodynamic analysis of a compression ignition engine with rated power of 14.7 kW, fueled with diesel oil, straight soybean oil, andFor reliability, the fuels were tested three times, and the mean values were compared using different statistical techniques.
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Thermodynamic analysis was carried out at 1,800 rpm. The results were evaluated applying analysis of variance and the Dunnett’s test. The engine operation with soybean oil in comparison with diesel oil showed reduction in power, increase in fuel consumption, similar fuel conversion efficiency, exergetic
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Mainly, thermodynamic analysis methods of pinch analysis, exergy analysis, second law analysis, and equipartition principles are combined to analyze process and energy systems. Process simulation packages, such as Aspen Plus and Hysys, may help in improving thermodynamic efficiency.
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The main goal of this work was to evaluate thermodynamic parameters of the soybean oil extraction process using ethanol as solvent. The experimental treatments were as followsaqueous solvents with water contents varying from 0 to 13% (mass
Ask For PriceThermodynamic and statistical analysis of soybean oil extraction process using renewable solvent - Rodrigues - 2010 - International Journal
The main goal of this work was to evaluate thermodynamic parameters of the soybean oil extraction process using ethanol as solvent. The experimental treatments were as followsaqueous solvents with water contents varying from 0 to 13% (mass
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Thermodynamic and statistical analysis of soybean oil extraction process using renewable solvent By Christianne E. C. RODRIGUES, Keila K. ARACAVA and Fernanda N. ABREU Abstract The main goal of this work was to evaluate thermodynamic parameters
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A First Law Thermodynamic Analysis of Biodiesel Production From Soybean Article (PDF Available)where Msoyoil was the molecular mass of the soybean oil (in g/mol), VNaOH was the volume of NaOH solution used to neutralize the released FFA (in
Ask For PriceKinetics and Thermodynamics of Oil Extraction from Jatropha curcas L. Using Ethanol as a Solvent - Hindawi
23/7/2015 · In the study the yield and kinetic and thermodynamic parameters of the oil extraction process from Jatropha curcas L. using ethanol as a solvent were evaluated for different temperatures, moisture contents of the solid phase, and particle sizes.
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www.sciencedirect/science/article/pii/S0016236117305884Process parameters including reaction temperature, molar ratio of methanol to soybean oil, and catalyst amount (mass percent of CH 3 ONa to soybean oil) were discussed. Besides, the kinetic and thermodynamic study of the integrated process were Ask For Price1. Introduction - Hindawi Publishing Corporation
downloads.hindawi/journals/ijce/2015/871236.xmlThe oil extraction experiments were performed in a cylindrical reactor with capacity of 500 mL and temperature control and equipped with mechanical stirring. The process was conducted at four different temperatures (30, 40, 50, and 60 C), with a Ask For PriceAdvances on kinetics and thermodynamics of non-catalytic supercritical methanol transesterification of some vegetable oils to- ScienceDirect
Kinetic and thermodynamic parameters of the non-catalytic supercritical methanol transesterification reaction of castor, jatropha, pongamia, tobacco, soybean and jojoba oils to biodiesel production were evaluated in the present study. The
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