Li Shuai, Leroy Philippe, Heberling Frank, Devau Nicolas, Jougnot Damien, Chiaberge Christophe
BRGM, French Geological Survey, Orléans, France.
BRGM, French Geological Survey, Orléans, France.
J Colloid Interface Sci. 2016 Apr 15;468:262-275. doi: 10.1016/j.jcis.2016.01.075. Epub 2016 Jan 29.
Zeta potential is a physicochemical parameter of particular importance in describing the surface electrical properties of charged porous media. However, the zeta potential of calcite is still poorly known because of the difficulty to interpret streaming potential experiments. The Helmholtz-Smoluchowski (HS) equation is widely used to estimate the apparent zeta potential from these experiments. However, this equation neglects the influence of surface conductivity on streaming potential. We present streaming potential and electrical conductivity measurements on a calcite powder in contact with an aqueous NaCl electrolyte. Our streaming potential model corrects the apparent zeta potential of calcite by accounting for the influence of surface conductivity and flow regime. We show that the HS equation seriously underestimates the zeta potential of calcite, particularly when the electrolyte is diluted (ionic strength ⩽ 0.01 M) because of calcite surface conductivity. The basic Stern model successfully predicted the corrected zeta potential by assuming that the zeta potential is located at the outer Helmholtz plane, i.e. without considering a stagnant diffuse layer at the calcite-water interface. The surface conductivity of calcite crystals was inferred from electrical conductivity measurements and computed using our basic Stern model. Surface conductivity was also successfully predicted by our surface complexation model.
ζ电位是描述带电多孔介质表面电学性质时特别重要的一个物理化学参数。然而,由于难以解释流动电势实验结果,方解石的ζ电位仍然鲜为人知。亥姆霍兹-斯莫卢霍夫斯基(HS)方程被广泛用于从这些实验中估算表观ζ电位。然而,该方程忽略了表面电导率对流动电势的影响。我们展示了在与NaCl水溶液电解质接触的方解石粉末上进行的流动电势和电导率测量。我们的流动电势模型通过考虑表面电导率和流动状态的影响来校正方解石的表观ζ电位。我们表明,HS方程严重低估了方解石的ζ电位,特别是当电解质被稀释时(离子强度⩽0.01 M),这是由于方解石表面电导率的缘故。基本的斯特恩模型通过假设ζ电位位于外亥姆霍兹平面成功预测了校正后的ζ电位,即不考虑方解石-水界面处的停滞扩散层。方解石晶体的表面电导率通过电导率测量推断得出,并使用我们的基本斯特恩模型进行计算。我们的表面络合模型也成功预测了表面电导率。