微通道
电动现象
流动电流
微流控
压力降
电流(流体)
材料科学
机械
化学
静水压力
电解质
纳米技术
分析化学(期刊)
电极
电气工程
色谱法
工程类
物理
物理化学
作者
Jun Yang,Fuzhi Lu,Larry W. Kostiuk,Daniel Y. Kwok
标识
DOI:10.1088/0960-1317/13/6/320
摘要
Pressure-driven flow in a microchannel induces a streaming current due to the presence of an electrical double layer in the interface between the electrolyte solution and channel wall. As the streaming current is of the order of a nano-amphere and is additive, we propose here a method to develop an electrokinetic battery consisting of an array of microchannels that converts the hydrostatic pressure of a liquid into electrical work. We have given oscillating analytical solutions by means of an electrical circuit analysis to model the multi-microchannel battery. Using superposition of the appropriate Fourier series, the derived analytical solutions are useful to predict the current when there is more general time-dependent flow through a microchannel array. To illustrate the idea, we have studied steady-state pressure-driven flow in micropore porous glass filter and compared the results with those predicted from our model. From a 30 cm hydrostatic pressure drop, an external current of 1–2 µA was obtained by means of water passing through the micropore porous glass filter. A larger current can be obtained by simply using a solution with higher salt concentration. This results in a new and potentially useful method of energy conversion by means of an array of microchannels.
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