Viscosities, Free Energies of Activation and their Excess Properties in the Binary Mixtures of Some Monoalkanolamines with Acetonitrile between 303.15 and 323.15 K: Experimental and Correlative Approach

Muhammad A. R. Khan, M. Mehedi Hasan Rocky, Md. Ariful Islam, Faisal I Chowdhury, M. Shamsuddin Ahmed, Shamim Akhtar
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Abstract

Viscosities (h) of three binary non-aqueous systems of ACN + MEA, + MMEA and + MEEA have been measured in the whole range of compositions at temperatures ranging between 303.15 and 323.15 K at an interval of 5 K. At different compositions, deviations in viscosity (Dh), free energy (ΔG‡) of activation for viscous flow along its excess values (ΔG‡E) were calculated from experimental ρ andh data. For all systems, h vs. x2 initially changed very slowly, but with the increment of solute concentration h were found to rise quite rapidly. The values of Dh were largely positive and they formed a sharp maximum invariably at the highly alkanolamine-rich regions. All positive values of Dh followed the increasing order as: ACN + MMEA > ACN + MEA > ACN + MEEA. The order of DG‡E at the maximum point was ACN + MMEA > ACN + MEA > ACN + MEEA. For the correlative model, zero parameter relations: Bingham, Kendall- Munroe, Gambill, and Eyring relations, one parameter relations: Hind, Grunberg-Nissan, Frenkel, Wijk, Katti-Chaudhri, Tamura Kurata and two as well as three parameter-based models: Heric, Ausländer, McAllister (3-body) and McAllister (4-body) Equation and the Jouyban-Acree model (JA) were employed to correlate viscosities. Ausländer equation fit the best for: ACN + MEA.  McAlliester 4-body fit the best for ACN + MMEA and ACN + MEEA. All the above results were attempted to be interpreted in terms of the strength and order of self-association, intra- as well as intermolecular hydrogen bonding via OH···O or OH···N and the effect due to steric hindrance of the concerned alkanolamine molecules and interstitial accommodation of ACN into alkanolamine network.
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303.15 ~ 323.15 K范围内单烷醇胺与乙腈二元混合物的黏度、自由活化能及其过量性质:实验及相关方法
测定了ACN + MEA、+ MMEA和+ MEEA三种二元非水体系在303.15 ~ 323.15 K温度范围内,以5k为间隔的粘度(h)。在不同成分下,根据实验ρ和h数据计算粘度偏差(Dh),沿其过量值(ΔG‡E)激活粘性流动的自由能(ΔG‡)。在所有体系中,初始h与x2的变化都非常缓慢,但随着溶质浓度的增加,h的变化非常迅速。Dh值大部分为正,并且在烷醇胺含量高的区域形成一个明显的最大值。Dh的正数值依次为:ACN + MMEA > ACN + MEA > ACN + MEEA。最大点DG‡E大小顺序为ACN + MMEA > ACN + MEA > ACN + MEEA。对于相关模型,零参数关系:Bingham、Kendall- Munroe、Gambill和Eyring关系,一参数关系:Hind、Grunberg-Nissan、Frenkel、Wijk、Katti-Chaudhri、Tamura Kurata,以及两个和三个基于参数的模型:Heric、Ausländer、McAllister(3体)和McAllister(4体)方程和Jouyban-Acree模型(JA)来关联粘度。Ausländer方程最适合:ACN + MEA。McAlliester四体最适合ACN + MMEA和ACN + MEEA。所有这些结果都试图从自结合的强度和顺序、通过OH··O或OH··N形成的分子内氢键和分子间氢键以及相关烷醇胺分子的空间位阻和ACN在烷醇胺网络中的间隙调节的影响来解释。
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