首页> 外文OA文献 >Role of water structure on the high pressure micellization and phase transformations of sodium dodecanoate aqueous solutions
【2h】

Role of water structure on the high pressure micellization and phase transformations of sodium dodecanoate aqueous solutions

机译:水结构对十二烷酸钠水溶液高压胶束化和相变的作用

摘要

The aim of this work is to study the micelle formation and possible subsequent transformations of sodium dodecanoate aggregates in aqueous solutions at pressures up to 700 MPa. This pressure range is much larger than in most available studies on surfactant solutions and allows for evaluating the possible effect of the low-density to high-density water transformation on the aggregative behavior of the surfactant. The speed-of-sound and attenuation coefficient were determined at 298.15 K as a function of pressure at concentrations up to 0.13 mol kg-1 in water. The speed-of-sound behavior with concentration is maintained up to pressures around 350 MPa. The attenuation coefficient, initially insensitive to pressure, exhibits a sudden increase around 250 MPa, reaching a maximum around 350 MPa and a plateau above 500 MPa in the case of the highest studied surfactant concentrations. From the analysis of the changes observed in these properties, it was possible to extend the concentration-pressure phase diagram of sodium dodecanoate at constant temperature. Some peculiarities found were: (1) the critical micellar concentration reaches a maximum around 170 MPa, (2) the micellar phase disappears above 400 MPa, (3) a phase transformation starts around 250 MPa, setting the solubility limit of the surfactant at concentrations around 0.06 mol kg-1 in this pressure region, and (4) further transformations occur between 350 and 500 MPa. We discuss in length the possibility that such transformations might be driven by structural changes linked to the so-called low-density-water to high-density-water transition. © 2014 American Chemical Society.
机译:这项工作的目的是研究在压力高达700 MPa的水溶液中十二烷酸钠聚集体的胶束形成和可能的后续转变。该压力范围比大多数有关表面活性剂溶液的现有研究中的压力范围大得多,并且可以评估从低密度到高密度水转化对表面活性剂聚集行为的可能影响。在水中浓度最高为0.13 mol kg-1的情况下,在298.15 K下确定了声速和衰减系数与压力的关系。在最高350 MPa的压力下,音速行为随浓度而保持。最初对压力不敏感的衰减系数在250 MPa左右突然增加,在研究的表面活性剂浓度最高的情况下,最大达到350 MPa,并达到500 MPa以上的平稳状态。通过分析观察到的这些性质的变化,可以扩展十二烷酸钠在恒定温度下的浓度-压力相图。发现一些特殊之处:(1)临界胶束浓度在170 MPa左右达到最大值,(2)胶束相在400 MPa以上消失,(3)在250 MPa左右开始相变,将表面活性剂的溶解度限制在浓度在该压力范围内约为0.06 mol kg-1,并且(4)在350至500 MPa之间发生进一步的转变。我们详细讨论了这种转变可能由与所谓的低密度水向高密度水过渡有关的结构变化驱动的可能性。 ©2014美国化学学会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号