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Articles

Validation of Messaâdi equation on viscosity-temperature dependence for some ternary liquid mixtures by statistical correlation analysis

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Pages 590-602 | Received 16 Mar 2019, Accepted 26 May 2019, Published online: 03 Jun 2019

References

  • Viswanath DS, Ghosh TK, Prasad GHL, et al. Viscosity of liquids. Theory, estimation, experiment, and data. Springer: Dordrecht, The Netherlands; 2007.
  • Viswanath DS, Natarajan G. Databook on viscosity of liquids. New York (NY): Hemisphere; 1989.
  • Dutt NVK, Prasad DHL. Representation of the temperature dependence of the viscosity of pure liquids. Hyderabad: Private Communication, Chemical Engineering Division, Indian Institute of Chemical Technology; 2004.
  • Perry RH. Perry’s chemical engineerers’ handbook. 6th ed. McGraw–Hill: New York; 1984. p. 278−282.
  • Dean JA. Handbook of organic chemistry. New York (NY): McGraw-Hill; 1987.
  • Ouerfelli N, Bouaziz M, Herráez JV. Treatment of Herráez equation correlating viscosity in binary liquid mixtures exhibiting strictly monotonous distribution. Phys Chem Liq. 2013;51:55–74.
  • Glasstone S, Laidler KL, Eyring H. The theory of rate process. New York (NY): McGraw-Hill; 1941.
  • Lee LS, Lee YS. The application of the equations of state incorporated with mixing rules for viscosity estimations of binary. Fluid Phase Equilib. 2001;181:47–58.
  • Qunfang L, Yu-Chun H. Correlation of viscosity of binary liquid mixtures. Fluid Phase Equilib. 1999;154:153–163.
  • Macias-Salinas R, Garcia-Sanchez F, Eloisa-Jimenez G. An equation-of-state-based viscosity model for non-ideal liquid mixtures.  Fluid Phase Equilib. 2003;210:319–334.
  • Gurung BB, Roy MN. Study of densities, viscosity deviations, and isentropic compressibilities of ternary liquid mixtures of water and ethane-1,2-diol with some monoalcohols at various temperatures. Phys Chem Liq. 2007;45(3):331–343.
  • Rodríguez A, Pereiro AB, Canosa J, et al. Dynamic viscosities of the ternary liquid mixtures (dimethyl carbonate + methanol + ethanol) and (dimethyl carbonate + methanol + hexane) at several temperatures. J Chem Thermodyn. 2006;38:505–519.
  • El-Sayed Moussa E-SH. Viscosities and Densities of Some Multi-Component Regular Liquid Solutions at Different Temperature Levels [ Thesis]. Windsor (ON): University of Windsor, 2005.
  • Jiménez E, Segade L, Franjo C, et al. Viscosity deviations of ternary mixtures di-n-butyl ether+1-propanol+n-octane at several temperatures. Fluid Phase Equilibr. 1998;149:339–358.
  • Modarress H, Mohsen-Nia M. Experimental and theoretical studies of viscosities of ternary mixture [2-propanol + ethyl acetate + n-hexane] and its binary constituents at 298.15, 308.15 and 313.15 K. Phys Chem Liq. 2006;44(1):67–76.
  • Rathore P, Singh M. Densities, viscosities and excess thermodynamic properties of ternary liquid mixtures of nitrobenzene with polar and non-polar solvents at 298.15 K. Indian J Chem. 2006;45A:2650–2657.
  • Omota L-M, Iulian O, Ciocîrlan O, et al. Viscosity of water, 1,4-dioxane and dimethyl sulfoxide binary and ternary systems at temperatures from 293.15 K to 313.15 K. Rev Roum Chim. 2008;53(11):977–988.
  • Dikko AB, Alkasim A. Some excess properties of ternary liquid mixture of water, methanol, ethanol at several temperatures. Int J Recent Res Phys Chem Sci. 2014;1(2):8–12.
  • Visak ZP, Ferreira AGM, Fonseca IMA. Densities and viscosities of the ternary mixtures water + butyl acetate + methanol and water + ethyl propionate + methanol at 303.15 K. J Chem Eng Data. 2000;45:926–931.
  • Pires RM, Costa HF, Ferreira AGM, et al. viscosity and density of water + ethyl acetate + ethanol mixtures at 298.15 and 318.15 K and atmospheric pressure. J Chem Eng Data. 2007;52:1240–1245.
  • Mariano A, Mussari L, Orozco M, et al. Volumetric and transport properties of the ternary mixtures of toluene (1) + benzene (2) + butyl acetate (3) at different temperatures. Phys Chem Liq. 2015;53(5):587–598.
  • Wan Normazlan WMD, Sairi NA, Alias Y, et al. Composition and temperature dependence of density, surface tension and viscosity of EMIM DEP/MMIM DMP + water + 1-propanol/2-propanol ternary mixtures and their mathematical representation using Jouyban-Acree model. J Chem Eng Data. 2014;59(8):2337–2348.
  • Ben Haj-Kacem R, Ouerfelli N, Herráez JV, et al. Contribution to modeling the viscosity Arrhenius-type equation for some solvents by statistical correlations analysis. Fluid Phase Equilibr. 2014;383:11–20.
  • Messaâdi A, Dhouibi N, Hamda H, et al. A new equation relating the viscosity Arrhenius temperature and the activation energy for some Newtonian classical solvents. J Chem. 2015;2015:12. Article ID 163262.
  • Ben Haj-Kacem R, Ouerfelli N, Herráez JV. Viscosity Arrhenius parameters correlation: extension from pure to binary fluid mixtures. Phys Chem Liq. 2015;53:776–784.
  • Haj-Kacem RB, Alzamel NO, Al-Omair NA, et al. Sensitivity of viscosity Arrhenius-type equation to density of liquids. Asian J Chem. 2016;28(11):2407–2410.
  • Al-Arfaj AA, Haj-Kacem RB, Snoussi L, et al. Correlation Analysis of the viscosity Arrhenius-type equations parameters for some binary liquids mixtures. Mediterr J Chem. 2017;6(2):23–32.
  • Haj-Kacem RB, Herráez JV, Al-Arfaj AA, et al. Correlation analysis of the power law parameters for viscosity of some engineering fluids. Phys Chem Liq. 2017;55(6):766–774.
  • Haj-Kacem RB, Alzamel NO, Ouerfelli N. Sensitivity of viscosity Arrhenius parameters to polarity of liquids. Russ J Phys Chem A. 2017;91(9):1654–1659.
  • Haj Kacem R, Dallel M, Al-Omair NA, et al. Analysis of correlation between viscosity Arrhenius parameters: extension to ternary liquid mixtures. Mediterr J Chem. 2017;6(5):208–215.
  • Dallel M, Al-Zahrani AA, Al-Shahrani HM, et al. Prediction of the boiling temperature of 1,2-dimethoxyethane and propylene carbonate through the study of viscosity temperature dependence of corresponding binary liquid mixtures. Phys Chem Liq. 2017;55:541–557.
  • Dallel M, Al-Arfaj AA, Al-Omair NA, et al. A novel approach of partial derivatives to estimate the boiling temperature via the viscosity Arrhenius behavior in N,N-dimethylformamide + ethanol fluid systems. Asian J Chem. 2017;29(9):2038–2050.
  • Salhi H, Al-Omair NA, Al-Arfaj AA, et al. Correlation between boiling temperature and viscosity arrhenius activation energy in N,N-dimethylformamide + 2-propanol mixtures at 303.15 to 323.15 K. Asian J Chem. 2016;28(9):1972–1984.
  • Al-Omair NA, Das D, Snoussi L, et al. A partial derivatives approach for estimation of the viscosity Arrhenius temperature in N,N-dimethylformamide + 1,4-dioxane binary fluid mixtures at temperatures from 298.15 K to 318.15 K. Phys Chem Liq. 2016;54:615–631.
  • Trabelsi Z, Dallel M, Salhi H, et al. On the viscosity Arrhenius temperature for methanol + N,N-dimethylformamide binary mixtures over the temperature range from 303.15 K to 323.15 K. Phys Chem Liq. 2015;53(4):529–552.
  • Messaâdi A, Salhi H, Das D, et al. A novel approach to discuss the viscosity Arrhenius behavior and to derive the partial molar properties in binary mixtures of N,N-dimethylacetamide with 2-methoxyethanol in the temperature interval (from 298.15 to 318.15) K. Phys Chem Liq. 2015;53(4):506–517.
  • Dhouibi N, Dallel M, Das D, et al. Notion of viscosity Arrhenius temperature for N,N-dimethylacetamide with N,N-dimethylformamide binary mixtures and its pure components. Phys Chem Liq. 2015;53(2):275–292.
  • Salhi H, Dallel M, Trabelsi Z, et al. Viscosity Arrhenius activation energy and derived partial molar properties in methanol + N,N-dimethylacetamide binary mixtures the temperatures from 298.15 K to 318.15 K. Phys Chem Liq. 2015;53(1):117–137.
  • Dallel M, Das D, Bel Hadj Hmida ES, et al. Derived partial molar properties investigations of viscosity Arrhenius parameters in formamide + N,N-dimethylacetamide systems at different temperatures. Phys Chem Liq. 2014;52(3):442–451.
  • Hichri M, Das D, Messaâdi A, et al. Viscosity Arrhenius activation energy and derived partial molar properties in binary mixtures of N,N-dimethylacetamide with 2-ethoxyethanol in the temperature interval (from 298.15 to 318.15) K. Phys Chem Liq. 2013;51(6):721–730.
  • Das D, Messaâdi A, Dhouibi N, et al. Viscosity Arrhenius activation energy and derived partial molar properties in water + N,N-dimethylacetamide binary mixtures from 298.15 K to 318.15 K. Phys Chem Liq. 2013;51(5):677–685.
  • Kalidas R, Laddha GS. Viscosity of ternary liquid mixtures. J Chem Eng Data. 1964;9:142–145.
  • Jouyban A, Soleymani J, Jafari F, et al. Mathematical representation of viscosity of ionic liquid + molecular solvent mixtures at various temperatures using the Jouyban–Acree model. J Chem Eng Data. 2013;58(6):1523–1528.
  • Spearman C. The proof and measurement of association between two things. Am J Psychol. 1904;15:72–101.
  • Kendall M. A new measure of rank correlation. Biometrika. 1938;30:81–89.
  • Wilcoxon F. Individual comparisons by ranking methods. Biomed Bull. 1945;1:80–83.
  • Wonacott TH, Wonacott RJ. Introductory statistics. 5th ed. New York: John Wiley & Sons, Inc.; 1990.

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