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陈守义, 程昌炳, 徐昌伟. 用流动电位法测定粘土的ζ电位[J]. 岩土工程学报, 1982, 4(2): 49-56.
引用本文: 陈守义, 程昌炳, 徐昌伟. 用流动电位法测定粘土的ζ电位[J]. 岩土工程学报, 1982, 4(2): 49-56.
Chen Shouyi, Cheng Changbing, Xu Changwei. Determination of ξ-potential of Clay by Using Streaming Potential Method[J]. Chinese Journal of Geotechnical Engineering, 1982, 4(2): 49-56.
Citation: Chen Shouyi, Cheng Changbing, Xu Changwei. Determination of ξ-potential of Clay by Using Streaming Potential Method[J]. Chinese Journal of Geotechnical Engineering, 1982, 4(2): 49-56.

用流动电位法测定粘土的ζ电位

Determination of ξ-potential of Clay by Using Streaming Potential Method

  • 摘要: 本文介绍如何用流动电位法测定粘土的ζ电位。引进传导系数α(α=Kb/K+βKs)后,使表达式Es=PDζ/4πη(K+βKs)应用于土壤中所遇到的困难得到了克服。文中对系数α的物理意义及其确定法作了说明。重塑钠高岭土的试验结果表明,只有在电解质浓度高于0.1N的条件下,计算ζ电位时方可不计及表面电导的作用。因此对于一般的天然土壤,本文提供的方法更具有现实意义。

     

    Abstract: In this paper, it is illustrated that how to use the streaming potential method to determine the ξ-potential of Clay. A conductivity factor α,α=Kb/K+βKs,is introduced in order to overcome the difficulty which appears in application of the equationEs=PDξ/4πη(K+βKs) to soil. The physical meaning of the coefficient α and the determi-nation of a are demonstrated.The results of experiment on remolded Na-kaolin show that the effect of surface conductivity cannot be neglected if the concentration of electrolyte is lower than 10-1 N. The method given by this paper, then, possesses more value for most natural clayey soil.

     

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