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电动现象的测量与解释。

Measurement and interpretation of electrokinetic phenomena.

作者信息

Delgado A V, González-Caballero F, Hunter R J, Koopal L K, Lyklema J

机构信息

University of Granada, Granada, Spain.

出版信息

J Colloid Interface Sci. 2007 May 15;309(2):194-224. doi: 10.1016/j.jcis.2006.12.075. Epub 2007 Mar 21.

Abstract

In this report, the status quo and recent progress in electrokinetics are reviewed. Practical rules are recommended for performing electrokinetic measurements and interpreting their results in terms of well-defined quantities, the most familiar being the zeta-potential or electrokinetic potential. This potential is a property of charged interfaces and it should be independent of the technique used for its determination. However, often the zeta-potential is not the only property electrokinetically characterizing the electrical state of the interfacial region; the excess conductivity of the stagnant layer is an additional parameter. The requirement to obtain the zeta-potential is that electrokinetic theories be correctly used and applied within their range of validity. Basic theories and their application ranges are discussed. A thorough description of the main electrokinetic methods is given; special attention is paid to their ranges of applicability as well as to the validity of the underlying theoretical models. Electrokinetic consistency tests are proposed in order to assess the validity of the zeta-potentials obtained. The recommendations given in the report apply mainly to smooth and homogeneous solid particles and plugs in aqueous systems; some attention is paid to nonaqueous media and less ideal surfaces.

摘要

本报告回顾了电动现象的现状和近期进展。文中推荐了进行电动测量以及根据明确界定的量(最常见的是zeta电位或电动电位)来解释测量结果的实用规则。该电位是带电界面的一种属性,且应独立于用于测定它的技术。然而,zeta电位往往并非唯一能从电动角度表征界面区域电状态的属性;停滞层的过剩电导率是另一个参数。获取zeta电位的要求是在其有效范围内正确运用电动理论。文中讨论了基本理论及其应用范围。对主要的电动方法进行了详尽描述;特别关注了它们的适用范围以及基础理论模型的有效性。为评估所获得的zeta电位的有效性,提出了电动一致性测试。本报告给出的建议主要适用于水体系中的光滑且均匀的固体颗粒和栓塞;对非水介质和不太理想的表面也给予了一定关注。

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