Fainerman V B, Mys V D, Makievski A V, Miller R
Medical Physicochemical Center, Donetsk Medical University, 16 Ilych Avenue, 83003 Donetsk, Ukraine.
J Colloid Interface Sci. 2006 Dec 1;304(1):222-5. doi: 10.1016/j.jcis.2006.08.023. Epub 2006 Aug 18.
Exact knowledge of the dead time as part of the bubble lifetime in the maximum bubble pressure method is an important prerequisite for accurate dynamic surface tension measurements. The duration of the dead time depends essentially on the capillary geometry and affects significantly the measured surface tensions of concentrated surfactant solutions. Increase of the dead time leads to a significant surface tension decrease of a freshly formed bubble surface due to the significantly higher residual adsorption of the surfactant molecules. It is shown that correct dynamic surface tensions are obtained with the experimental procedure of Sugden's method only when in addition to the fixed frequency of bubble formation, also the dead time values for the two capillaries are kept constant.
在最大气泡压力法中,作为气泡寿命一部分的死时间的精确知识是准确测量动态表面张力的重要前提。死时间的持续时间主要取决于毛细管的几何形状,并对所测量的浓缩表面活性剂溶液的表面张力有显著影响。死时间的增加会导致新形成的气泡表面的表面张力显著降低,这是由于表面活性剂分子的残余吸附明显更高。结果表明,只有在除了固定的气泡形成频率之外,还使两根毛细管的死时间值保持恒定的情况下,采用萨格登方法的实验程序才能获得正确的动态表面张力。