EXCESS AND DEVIATIONS PROPERTIES FOR THE BINARY SOLVENT MIXTURES OF TETRAHYDROFURFURYL ALCOHOL WITH SOME AROMATIC HYDROCARBONS AT 298.15K

Authors

  • Dhafir Tamween Ajeel AL-HEETIMI Department of Chemistry, College of Education for Pure Science Ibn-Al-Haitham, University of Baghdad, Baghdad, Iraq. Email: dhafir.t.a@ihcoedu.uobaghdad.edu.iq. https://orcid.org/0000-0003-3694-8234
  • Zainab Abbas AL-DULAIMY Department of Chemistry, College of Education for Pure Science Ibn-Al-Haitham, University of Baghdad, Baghdad, Iraq. Corresponding author: dhafir.t.a@ihcoedu.uobaghdad.edu.iq.
  • Asal Ahmed AL-JAWARY Department of Chemistry, College of Education for Pure Science Ibn-Al-Haitham, University of Baghdad, Baghdad, Iraq. Corresponding author: dhafir.t.a@ihcoedu.uobaghdad.edu.iq.
  • Omar Sabeeh AL-KHAZRAJY Department of Chemistry, College of Education for Pure Science Ibn-Al-Haitham, University of Baghdad, Baghdad, Iraq. Corresponding author: dhafir.t.a@ihcoedu.uobaghdad.edu.iq. https://orcid.org/0000-0001-8713-5618

DOI:

https://doi.org/10.24193/subbchem.2019.1.08

Keywords:

Binary systems, Tetrahydrofurfuryl alcohol, Deviations and excess properties, Density, Viscosity

Abstract

In this work, excess properties (e.g. excess molar volume (VE), excess viscosity (ȠE), excess Gibbs free energy of activation of viscos flow (∆G*E) and molar refraction changes (∆nD) of binary solvent mixtures of tetrahydrofurfuryl alcohol (THFA) with aromatic hydrocarbons (benzene, toluene and p-xylene) have been calculated. This was achieved by determining the physical properties including density ρ, viscosity Ƞ and refraction index nD of liquid mixtures at 298.15K. Results of the excess parameters and deviation functions for the binary solvent mixtures at 298.15 K have been discussed by molecular interactions that occur in these mixtures. Generally, parameters showed negative values and have been found to fit well to Redlich-Kister equation which has been used to obtain the coefficients and evaluate the standard error.

References

B. García, R. Alcalde, J.M. Leal, J.S. Matos, Journal of the Chemical Society, Faraday Transactions, 1996, 92(18), 3347.

Y. Maham, C.N. Liew, A. E. Mather, Journal of solution chemistry, 2002, 31(9), 743.

R. M. Pires, H.F. Costa, A.G.M. Ferreira, I.M.A. Fonseca, Journal of Chemical & Engineering Data, 2007,52, 1240.

M.S. Lakshmi, R.R. Raju, C. Rambabu, GV. R. Rao and K. Narendra, Research and Reviews: Journal of Chemistry, 2013, 2(1),12.

P. Anila, K.R. Reddy, G.S. Rao, P.V.S. Sairam, D. Ramachandran,C. Rambabu, Thermochimica Acta, 2015, 620, 1.

M.N. Sovilj, Journal of Chemical & Engineering Data, 1995, 40(5), 1058.

F. Giro, M.F. Goncalves, A.G.M. Ferreira, I.M.A. Fonseca, Fluid phase equilibria, 2003, 204, 217.

Z.A. AL-Dulaimy, D.T. AL-Heetimi, H.S. Khalaf, A.M. Abbas, Oriental Journal of Chemistry, 2018, 34(4), 2074.

H. Yilmaz, Turkish Journal of Physics, 2002, 26(3), 243.

A. Boruń, M. Żurada, A. Bald, Journal of thermal analysis and calorimetry, 2010, 100(2), 707.

S. Sharma, K. Thakkar, P. Patel, M. Makavana, Advances in Physical Chemistry, 2013, 2013, 1.

K.R. Reddy, D.B.K. Kumar, G.S. Rao, P. Anila, C. Rambabu, Thermochimica Acta, 2014, 590, 116.

M. Yasmin, M. Gupta, Journal of solution chemistry, 2011,40(8),1458.

A.S. Al-Jimaz, J.A. Al-Kandary, A.H.M. Abdul-Latif, Fluid Phase Equilib.,2004, 218(2), 247.

P. Brocos, Á. Piñeiro, R. Bravo, A. Amigo, Physical Chemistry Chemical Physics, 2003, 5(3), 550.

T.M. Aminabhavi, H.T. Phayde, R.S. Khinnavar, B. Gopalakrishna, K.C. Hansen, Journal of Chemical & Engineering Data, 1994, 39(2), 251.

T.M. Aminabhavi, B. Gopalakrishna, Journal of Chemical & Engineering Data, 1995, 40(2), 462.

O. Redlich, A.T. Kister, Industrial & Engineering Chemistry ,1948, 40(2), 345.

Z.P. Visak, A.G. Ferreira, I.M. Fonseca, Journal of Chemical & Engineering Data, 2000, 45(5), 926.

S.P. Šerbanović, M.L. Kijevčanin, I.R. Radović, B.D. Djordjević, Fluid Phase Equilibria, 2006, 239(1), 69.

I.R. Radović, M.L. Kijevčanin, E.M. Djordjević, B.D. Djordjević, S.P. Šerbanović, Fluid Phase Equilibria, 2008, 263(2), 205.

P. Jain, M. Singh, J. Chem. Eng. Data, 2004, 49(5), 1214.

S. Sharma and M. Makavana, Fluid Phase Equilibria, 2014, 375, 219.

Dikio, E.D., Oriental Journal of Chemistry, 2014, 30(3), 953.

S.A. Salman, S.A. Al-Khfaji, K.I. Hussain, Z.A. Al-Dulaimy, A.M. Abbas, D.T.A. Al-Heetimi, RASĀYAN Journal of Chemistry, 2018,11(2), 589.

C. Yang, P. Ma and Q. Zhou, Journal of Chemical & Engineering Data, 2004, 49(4), 881.

A.K. Nain, P. Chandra, J.D. Pandey, S. Gopal, Journal of Chemical & Engineering Data, 2008, 53(11), 2654.

J.A. Al-Kandary, A.S. Al-Jimaz, A.H.M. Abdul-Latif, Journal of Chemical & Engineering Data, 2006, 51(6), 2074.

J.G. Baragi, and M.I. Aralaguppi, The Journal of Chemical Thermodynamics, 2006, 38(12), 1717.

Downloads

Published

2019-03-29

How to Cite

AL-HEETIMI, D. T. A. ., AL-DULAIMY, Z. A. ., AL-JAWARY, A. A. ., & AL-KHAZRAJY, O. S. . (2019). EXCESS AND DEVIATIONS PROPERTIES FOR THE BINARY SOLVENT MIXTURES OF TETRAHYDROFURFURYL ALCOHOL WITH SOME AROMATIC HYDROCARBONS AT 298.15K. Studia Universitatis Babeș-Bolyai Chemia, 64(1), 103–112. https://doi.org/10.24193/subbchem.2019.1.08

Issue

Section

Articles

Most read articles by the same author(s)