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Studies on Acoustic Behavior, Viscosity, and Density of Some Commercial Extractants and Their Molecular Interaction with Diluent, Modifier, and Extractant

机译:一些商业萃取剂的声学行为,粘度和密度及其与稀释剂,改性剂和萃取剂的分子相互作用的研究

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Acoustical and viscosity measurements have been made for binary liquid mixtures of commercially available solvent extractants, LIX reagents such as LIX 622 and LIX 860 in benzene, amyl alcohol, and tri-n-butyl phosphate (TBP) at 303.15 K. The measured values of ultrasonic velocity, density, and viscosity have been utilized to compute some acoustic as well as thermodynamic parameters such as intermolecular free length, L f, isentropic compressibility, βs, molar volume, V, and Gibb's excess free energies of activation of viscous flow, Δ G*E. These parameters along with the derived values of isentropic compressibility, βs E, intermolecular free length, L f E, and molar volume, V E, have been utilized for a comparative study of molecular interactions between the components present in different liquid systems. The experimental ultrasonic velocities for aforementioned mixtures have been compared with theoretically estimated velocities using different empirical relations, and the relative merits of these theories and relations have been discussed in terms of percentage variation.
机译:已在303.15 K下对市售溶剂萃取剂,LIX试剂(如LIX 622和LIX 860)在苯,戊醇和磷酸三正丁酯(TBP)中的二元液体混合物进行了声学和粘度测量。利用超声波速度,密度和粘度来计算一些声学和热力学参数,例如分子间自由长度,L f ,等熵可压缩性,βs,摩尔体积,V和吉布的过量自由激活粘性流的能量ΔG * E 。这些参数以及等熵可压缩性βs E ,分子间自由长度Lf E 和摩尔体积VE 的导出值已被确定。用于比较研究不同液体系统中存在的组分之间的分子相互作用。使用不同的经验关系,将上述混合物的实验超声速度与理论上估计的速度进行了比较,并就百分比变化讨论了这些理论和关系的相对优点。

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