稀乙醇水溶液中奇点附近扩散过程的中子研究

IF 0.4 Q4 PHYSICS, NUCLEAR
O.A. Vasylkevych, V.I. Slisenko
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引用次数: 0

摘要

在这项工作中考虑的问题涉及到液体的物理学。更确切地说,是液体动力学过程的物理学。采用慢中子准弹性散射的方法研究了水-乙醇体系分子在温度为8℃时的动力学与浓度的关系,以及在浓度为X = 0.04摩尔粒子(mol. particle)时的动力学与温度的关系。确定了分子的总体自扩散系数D、其单粒子Ds-p和集体Dcoll分量,以及分子在振动态t的稳定寿命时间。对小浓度区域进行了详细的研究,其中在浓度X = 0.04 mol. particle附近。X = 0.2 mol. particle。两个最小值存在于系数D和Ds-p中。时间t在这些浓度下显著增加。这表明在这些浓度下分子扩散激活机制的强度显著降低,这很可能是由水和乙醇分子结合成复合物(簇)引起的。同样,在温度为4°С附近的D和Ds-p系数中也发现了深度最小值。这个温度下的时间t也增加了。即在温度为4℃时,溶液分子扩散的激活机制强度减小。因此,在X = 0.04 mol.粒子的浓度下。在温度为4℃时,水-乙醇体系中存在一个特殊点。然而,它的位置与散射光的数据并不一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutron studies of diffusion processes near a singular point in a dilute aqueous solution of ethanol
The problem considered in this work relates to the physics of liquids. Rather, to the physics of dynamic processes in liquids. The method of quasielastic scattering of slow neutrons was used to study the dynamics of molecules of the water-ethanol system as a function of concentration at a temperature of 8 °C and as a function of temperature at a concentration of X = 0.04 molar particles (mol. particl.). The overall coefficient of self-diffusion of molecules D, its single-particle Ds-p and collective Dcoll components, as well as the time of settled life of a molecule in a vibrational state t, are determined. The region of small concentrations was studied in detail, where in the vicinity of concentrations X = 0.04 mol. particl. and X = 0.2 mol. particl. two minima are found in the coefficients D and Ds-p. Time t at these concentrations increases significantly. This indicates a significant decrease in the intensity of the activation mechanism of molecular diffusion at these concentrations, which is quite possibly caused by the binding of water and ethanol molecules into complexes (clusters). Similarly, a deep minimum was found in the D and Ds-p coefficients near the temperature of 4 °С. Time t at this temperature also increases. That is, at a temperature of 4 °C, the intensity of the activation mechanism of the diffusion of solution molecules decreases. Therefore, at a concentration of X = 0.04 mol. particl. and at a temperature of 4°C, a special point exists in the water-ethanol system. However, its position does not coincide with the data on scattering light.
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
10
审稿时长
19 weeks
期刊介绍: The journal Nuclear Physics and Atomic Energy presents the publications on Nuclear Physics, Atomic Energy, Radiation Physics, Radioecology, Engineering and Methods of Experiment. The journal includes peer-reviewed articles which are completed works containing new results of theoretical and experimental researches and are of interest for the scientists, postgraduate students, engineers and for the senior students.
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