首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Determination of electric double layer parameters for spherical silica particles under application of the triple layer model using surface charge density data and results of electrokinetic sonic amplitude measurements
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Determination of electric double layer parameters for spherical silica particles under application of the triple layer model using surface charge density data and results of electrokinetic sonic amplitude measurements

机译:使用表面电荷密度数据和电动声幅值测量结果,应用三层模型确定球形二氧化硅颗粒的双电层参数

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The surface charge density, sigma (0), of AEROSIL OX 50 (Degussa) was determined by titration experiments as well as the electrophoretic mobility, mu, using the electrokinetic sonic amplitude method to characterize the electric double layer of spherical SiO2-particles in dependence on pH and electrolyte concentration. The electrokinetic experiments result in an isoelectric point pH(iep) 2.4. At the lowest electrolyte concentration investigated a minimum in the mu -pH-plots emerges. Three relationships between mu and the zeta -potential were examined for the evaluation of the experimental data: (i) the Smoluchowski formula, (ii) an equation from O'Brien et al. (J. Colloid Interf. Sci. 173 (1995) 406) for the Dukhin number which includes the contribution of the mobile layer to surface conductivity only, (iii) Dukhin numbers were determined from the results of conductivity measurements under application of the theory of O'Brien and Perrins (J. Colloid Interf. Sci. 99 (1984) 20) with numerical solutions of Kang and Sangani (J. Colloid Interf. Sci. 165 (1994) 195). Here, the contribution of the ions in the stagnant layer is included too. The Smoluchowski formula is not suitable to describe the mu -pH plots in a quantitative manner, specially at low electrolyte concentration. The other two methods taking into account the surface conductivity give a comparable goodness of fit as a result of the multiparameter regression under application of the triple layer model. A significant contribution of the ions in the stagnant layer to surface conductivity follows from the conductivity measurements. This effect results in an increase of the magnitude of the zeta -potential calculated from the electrophoretic mobility in comparison to the Smoluchowski formula. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 65]
机译:通过滴定实验和电泳迁移率μ来确定AEROSIL OX 50(Degussa)的表面电荷密度sigma(0),并使用电动声振幅法表征球形SiO2颗粒的电双层pH和电解质浓度。电动实验的等电点pH(iep)2.4。在所研究的最低电解质浓度下,mu -pH曲线中出现最小值。为了评估实验数据,检查了μ与ζ电位之间的三种关系:(i)Smoluchowski公式,(ii)O'Brien等人的方程。 (J. Colloid Interf。Sci。173(1995)406)中的Dukhin数,其中仅包括可移动层对表面电导率的贡献。(iii)Dukhin数是根据电导率理论应用电导率测量结果确定的O'Brien和Perrins(J. Colloid Interf。Sci。99(1984)20)以及Kang和Sangani的数值解(J. Colloid Interf。Sci。165(1994)195)。这里,也包括了停滞层中离子的贡献。 Smoluchowski公式不适用于定量描述mu -pH图,特别是在低电解质浓度下。考虑到表面电导率的其他两种方法,由于在应用三层模型的情况下进行了多参数回归,因此具有相当的拟合优度。停滞层中的离子对表面电导率的重要贡献来自电导率测量。与Smoluchowski公式相比,该效应导致了从电泳迁移率计算得出的ζ电位的幅度增加。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:65]

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