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The Effect of Operating Flow Rate on the Voltage Rise of Energy Extraction by Double Layer Expansion

机译:运行流速对双层膨胀能量提取电压升高的影响

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Salinity gradients of water solution can be a great resource for generating clean electrical power. In this work, we used capacitive energy extraction based on double layer expansion (CDLE) technique to straightly convert this energy into electrical energy. We performed the experiment under different flow rates and the external given voltage values and carefully analyzed the result based on the Gouy-Chapman-Stern (GCS) model. We identified some factors that reduce the amount of extracted energy by CDLE cell. In particular, these factors are the occurrence of EDL overlapping inside the porous material and the non-zero internal resistance of CDLE cell. We examined the effect of flow rates on the voltage rise of CDLE cell during the exchanging process from saline water to fresh water. The voltage rise converges rapidly with the increase of the flow rate. This improves the power production as the time required to perform one CDLE cycle is shorter with the higher flow rate. In addition, despite its effect on the EDL formation, the external given potential does not enhance the speed of CDLE cycle.
机译:水溶液的盐度梯度可以是用于产生清洁电力的伟大资源。在这项工作中,我们使用基于双层扩展(CDLE)技术的电容能量提取将这种能量直接转换为电能。我们在不同的流量速率和外部给定电压值下进行了实验,并仔细分析了基于Gouy-Chapman-Stern(GCS)模型的结果。我们确定了一些因素,通过CDER细胞减少提取的能量的量。特别地,这些因素是在多孔材料内部的EDL重叠的发生和CDER细胞的非零内阻。我们研究了流量在盐水中的交换过程中对CLE细胞电压升高的影响。电压上升随着流速的增加而快速收敛。随着执行一个CDER循环所需的时间,这改善了电力生产,其流量较短。此外,尽管它对EDL形成有影响,外部给定潜力不会增强CDLE循环的速度。

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