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首页> 外文期刊>Journal of the Chinese Institute of Chemical Engineers >Microcalorimetric and condutivity studies of the effects of solutes on the percolation behavior of reverse micelle systems
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Microcalorimetric and condutivity studies of the effects of solutes on the percolation behavior of reverse micelle systems

机译:微量量热法和电导率研究溶质对反胶束系统渗透行为的影响

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摘要

This study employed high sensitivity microcalorimetry to investigate the percolation behavior of W/O microemulsions of AOT with and without solutes of salts, amino acids, and proteins. The dilution heat and the enthalpy behavior of the reverse micelle solutions in the percolation process were measured by isothermal titration microcalorimetry (ITC). The enthalpy behavior reported in this investigation supports qualitatively the association model of percolation. The second virial coefficient of the interactions between reverse micelle droplets can be derived from the information of the dilution heat of the reverse micellar system with the concentration of the reverse micelles and incorporating a hard-sphere interaction potential assumption. The derived second Virial coefficients of different reverse micelle solutions are discussed along with the conductivity percolation temperature, and the difference between the interaction potentials are in good agreement with the shift of the percolation temperature of various micellar systems. Viscosity measurements were also taken from of the micellar solutions in the process of percolation in this study. A discussion on the relationship between the solute effects and the percolation in terms of the charge and the surface activity of the solutes is also included. [References: 32]
机译:这项研究采用高灵敏度的微量量热法研究了有或没有盐,氨基酸和蛋白质溶质的AOT W / O微乳的渗透行为。通过等温滴定微量热法(ITC)测量反胶束溶液在渗滤过程中的稀释热和焓行为。本研究报道的焓行为在质量上支持了渗滤的关联模型。反胶束液滴之间相互作用的第二病毒系数可以从反胶束系统的稀释热,反胶束的浓度以及硬球相互作用势假设的信息中得出。讨论了不同反胶束溶液的第二维里尔系数以及电导率渗流温度,相互作用电位之间的差异与各种胶束体系的渗流温度的变化非常吻合。在本研究的渗滤过程中,还从胶束溶液中测量了粘度。还包括关于溶质的电荷和表面活性的溶质效应和渗滤之间关系的讨论。 [参考:32]

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