Transport properties of n-ethylene glycol aqueous solutions with focus on triethylene glycol-water.

C. Santos, M. C. Barros, A. C. Ribeiro, M. Bou-Ali, A. Mialdun, V. Shevtsova
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引用次数: 3

Abstract

Soret effect and diffusion in triethylene glycol (TEG)-water mixtures were investigated as a function of concentration at 25 °C by means of optical digital interferometry, with the use of a classical Soret cell. Diffusion D, thermal diffusion DT, and Soret ST coefficients are described for the full concentration range and an analysis is made individually for TEG-water mixture and within a series of n-ethylene glycol (n-EG) aqueous systems. All coefficients decrease with increasing the concentration of TEG and n-EG. ST shows a change of sign with concentration, and this change is directly related to the ability of the n-EG molecule to establish hydrogen bonding with water. Diffusion and thermal diffusion coefficients present a plateau behavior with increasing concentration, showing the occurrence of changes in the preferential interactions in aqueous solution with concentration and meaning that, at high TEG composition, ether oxygens can be involved in the molecular interactions.
正乙二醇水溶液的输运性质,重点是三乙二醇-水。
使用经典Soret细胞,采用光学数字干涉测量法研究了25°C时三甘醇(TEG)-水混合物中Soret效应和扩散随浓度的变化。扩散D、热扩散DT和Soret ST系数描述了整个浓度范围,并对teg -水混合物和一系列n-乙二醇(n-EG)水系统进行了单独分析。各系数随TEG和n-EG浓度的增加而减小。ST随浓度变化符号,这种变化与n-EG分子与水建立氢键的能力直接相关。扩散系数和热扩散系数随浓度的增加呈平台行为,表明水溶液中的优先相互作用随浓度的变化而发生变化,这意味着在高TEG组成下,醚氧可以参与分子相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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