Sound Velocities in Aqueous Solutions of n-Butylamine between 303.15 and 323.15 K: Experiment and Theory

Author:

Muhammad A. R. Khan ,Mohammed Sohel ,I Chowdhury Faisal,Shamim Akhtar

Abstract

Density (ρ) and sound velocity (u) have been measured for aqueous solutions of n-butylamine ( W + NBA) in the whole range of composition at an interval of 5 K. Deviation in Sound Velocity (∆u), Isentropic Compressibility (Ks), Excess Isentropic Compressibility (KsE), Specific Acoustic Impedance (Z), Rao's Constant (R) and Wada's Constant (W) have been calculated from measured u and ρ. ∆u versus x2 curve is negative and with the increment of temperature, ∆u decreases; Ks values of W + NBA are all positive whereas KsE values are all negative. All the above outcomes are interpreted in terms of molecular interaction especially hydrogen bonding and hydrophobic hydration between water and n-butylamine. Moreover, experimental data for u correlated with some theoretical equations. The relations are Nomoto’s Relation (uN), Impedance Relation (uIR), the Rao’s specific velocity method relation (uR), Van Deel’s ideal mixing relation (uIMR) and theoretical sound velocity according to Free Length Theory (uFLT). The validity of these relations with experimental values has been tested by measuring standard percentage deviation () and average percentage error (APE).

Publisher

UNIMAS Publisher

Subject

Industrial and Manufacturing Engineering,General Business, Management and Accounting,Materials Science (miscellaneous),Business and International Management

Reference24 articles.

1. [1] Nithiyanantham, S., & Palaniappan, L. (2012). Ultrasonic study on some monosaccharides in aqueous media at 298.15 K. Arabian journal of chemistry, 5(1), 25-30. https://doi.org/10.1016/j.arabjc.2010.07.018.

2. [2] Arul, G. & Palaniappan, L. (2005). Ultrasonic study of 1-butanol in pyridine with benzene, Indian J. Pure Appl. Phys. 43, 755-758.

3. [3] Kumar, D. S., & Rao, D. K. (2007). Study of molecular interactions and ultrasonic velocity in mixtures of some alkanols with aqueous propylene glycol., Indian J. Pure Appl. Phys. 210-220.

4. [4] Hemmes, P., Maevskii, A. A., Bukin, V. A., & Sarvazyan, A. P. (1980). Ultrasonic investigation of solute-solvent and solute-solute interactions in aqueous solutions of bases, nucleosides, and nucleotides. 3. Solute-solute interactions: studies of base stacking by ultrasonic velocity measurements. The Journal of Physical Chemistry, 84(7), 699-703. https://doi.org/10.1021/j100444a004

5. [5] Prakash, S., Singh, J., & Srivastava, S. (1988). Acoustic and Physico-chemical behaviour of Dimethylformamide with Benzene and Toluene at 30, 35 and 40° C. Acta Acustica united with Acustica, 65(5), 263-265.

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