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研究木材表面的时间相关动电电位。

Investigating the time-dependent zeta potential of wood surfaces.

机构信息

Wood Materials Science, Institute for Building Materials, ETH Zürich, Stefano-Franscini-Platz 3, 8093 Zürich, Switzerland; Applied Wood Materials, Empa-Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600 Dübendorf, Switzerland.

Anton Paar GmbH, 8054 Graz, Austria.

出版信息

J Colloid Interface Sci. 2018 May 15;518:165-173. doi: 10.1016/j.jcis.2018.02.022. Epub 2018 Feb 7.

Abstract

This work reports on streaming potential measurements through natural capillaries in wood and investigates the cause of a time-dependent zeta potential measured during the equilibration of wood cell-walls with an electrolyte solution. For the biomaterial, this equilibration phase takes several hours, which is much longer than for many other materials that have been characterized by electrokinetic measurements. During this equilibration phase the zeta potential magnitude is decaying due to two parallel mechanisms: (i) the swelling of the cell-wall which causes a dimensional change reducing the charge density at the capillary interface; (ii) the transport of ions from the electrolyte solution into the permeable cell-wall which alters the electrical potential at the interface by internal charge compensation. The obtained results demonstrate the importance of equilibration kinetics for an accurate determination of the zeta potential, especially for materials that interact strongly with the measurement electrolyte. Moreover, the change in zeta potential with time can be correlated with the bulk swelling of wood if the effect of electrolyte ion diffusion is excluded. This study shows the potential of streaming potential measurements of wood, and possibly of other hygroscopic and nanoporous materials, to reveal kinetic information about their interaction with liquids, such as swelling and ion uptake.

摘要

本工作报告了通过木材中的天然毛细管进行流动电势测量,并研究了在木材细胞壁与电解质溶液达到平衡过程中测量到的时变 ζ 电位的原因。对于这种生物材料,这个平衡阶段需要几个小时,比许多其他通过电动测量进行了特性描述的材料长得多。在这个平衡阶段,由于两个平行的机制,ζ 电位的幅度会衰减:(i)细胞壁的溶胀导致尺寸变化,从而降低毛细管界面处的电荷密度;(ii)离子从电解质溶液向可渗透的细胞壁的传输通过内部电荷补偿改变界面处的电势。所得结果表明,对于准确确定 ζ 电位,特别是对于与测量电解质强烈相互作用的材料,平衡动力学的重要性。此外,如果排除电解质离子扩散的影响,ζ 电位随时间的变化可以与木材的体膨胀相关联。这项研究表明了木材流动电势测量的潜力,以及其他吸湿和纳米多孔材料的潜力,可以揭示它们与液体相互作用的动力学信息,例如溶胀和离子吸收。

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