Department of Applied Physics, School of Sciences, University of Granada, 18071 Granada, Spain.
J Colloid Interface Sci. 2013 Jul 15;402:340-9. doi: 10.1016/j.jcis.2013.03.068. Epub 2013 Apr 12.
Capacitive energy extraction based on double layer expansion (CDLE) is the name of a new method devised for extracting energy from the exchange of fresh and salty water in porous electrodes. It is based on the change of the capacitance of electrical double layers (EDLs) at the electrode/solution interface when the concentration of the bulk electrolyte solution is modified. The use of porous electrodes provides huge amounts of surface area, but given the typically small pore size, the curvature of the interface and EDL overlap should affect the final result. This is the first aspect dealt with in this contribution: we envisage the electrode as a swarm of spherical particles, and from the knowledge of their EDL structure, we evaluate the stored charge, the differential capacitance and the extracted energy per CDLE cycle. In all cases, different pore radii and particle sizes and possible EDL overlap are taken into account. The second aspect is the consideration of finite ion size instead of the usual point-like ion model: given the size of the pores and the relatively high potentials that can be applied to the electrode, excluded volume effects can have a significant role. We find an extremely strong effect: the double layer capacitance is maximum for a certain value of the surface potential. This is a consequence of the limited ionic concentration at the particle-solution interface imposed by the finite size of ions, and leads to the presence of two potential ranges: for low electric potentials the capacitance increases with the ionic strength, while for large potentials we find the opposite trend. The consequences of these facts on the possibility of net energy extraction from porous electrodes, upon changing the solution in contact with them, are evaluated.
基于双层扩展(CDLE)的电容能量提取是一种从多孔电极中新鲜盐水和咸水交换中提取能量的新方法。它基于当电解质溶液的浓度被改变时,在电极/溶液界面处双电层(EDL)的电容变化。多孔电极的使用提供了大量的表面积,但考虑到典型的小孔径,界面曲率和 EDL 重叠应该会影响最终结果。这是本文首先处理的方面:我们将电极设想为一群球形颗粒,并且从它们的 EDL 结构的知识中,我们评估存储电荷,微分电容和每个 CDLE 周期提取的能量。在所有情况下,都考虑了不同的孔径和颗粒尺寸以及可能的 EDL 重叠。第二个方面是考虑有限的离子尺寸而不是通常的点状离子模型:考虑到孔的尺寸和可以施加到电极的相对较高的电势,排除体积效应可能具有重要作用。我们发现一个极其强烈的效果:双电层电容在表面电势的某个值处达到最大值。这是由离子的有限尺寸对颗粒-溶液界面处的离子浓度的限制引起的,并且导致存在两个电势范围:对于低电势,电容随离子强度增加而增加,而对于大电势,我们发现相反的趋势。这些事实对多孔电极从改变与其接触的溶液中提取净能量的可能性的影响进行了评估。