Department of Marine Engineering, Dalian Maritime University, Dalian 116026, China.
College of Information Science and Technology, Dalian Maritime University, Dalian 116026, China.
J Colloid Interface Sci. 2014 Feb 15;416:101-4. doi: 10.1016/j.jcis.2013.10.043. Epub 2013 Nov 8.
This paper reports a novel and very simple method for measuring the zeta potential of electrolyte solution-air interface. When a measuring electrode contacts the electrolyte solution-air interface, an electrical current will be generated due to the potential difference between the electrode-air surface and the electrolyte solution-air interface. The amplitude of the measured electric signal is linearly proportional to this potential difference; and depends only on the zeta potential at the electrolyte solution-air interface, regardless of the types and concentrations of the electrolyte. A correlation between the zeta potential and the measured voltage signal is obtained based on the experimental data. Using this equation, the zeta potential of any electrolyte solution-air interface can be evaluated quickly and easily by inserting an electrode through the electrolyte solution-air interface and measuring the electrical signal amplitude. This method was verified by comparing the obtained results of NaCl, MgCl2 and CaCl2 solutions of different pH values and concentrations with the zeta potential data reported in the published journal papers.
本文报道了一种新颖且非常简单的测量电解质溶液-空气界面 ζ 电位的方法。当测量电极接触电解质溶液-空气界面时,由于电极-空气表面和电解质溶液-空气界面之间的电势差,将产生电流。测量电信号的幅度与该电势差呈线性比例关系;并且仅取决于电解质溶液-空气界面处的 ζ 电位,而与电解质的类型和浓度无关。基于实验数据获得了 ζ 电位与测量电压信号之间的相关性。通过将电极插入电解质溶液-空气界面并测量电信号幅度,使用该方程可以快速、轻松地评估任何电解质溶液-空气界面的 ζ 电位。通过将不同 pH 值和浓度的 NaCl、MgCl2 和 CaCl2 溶液的实验结果与已发表的期刊论文中报道的 ζ 电位数据进行比较,验证了该方法。