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Experimental Investigation of Operating Parameters in Power Generation by Lab-Scale Reverse Electro-Dialysis (RED)

机译:实验室规模的反向电渗析(RED)发电操作参数的实验研究

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摘要

The reverse electro-dialysis (RED) is a renewable technology to produce electricity by mixing of differently concentrated water. In this study, the authors fabricated lab-scale RED, and attempted to evaluate the RED performance upon different operating parameters. Firstly, the effect of salinity ratio on the RED performance was examined by varying the concentration of low-salinity water. The performance was optimized by an increase in open circuit voltage (OCV) and cell resistance with salinity ratio. Individual resistances were analyzed by electrochemical impedance spectroscopy, and their impacts on power output were addressed. Second, the effect of flow rate of salinity solutions was studied, and it was found to affect the concentration polarization in RED. Lastly, the effect of the flow rate of electrode rinse solution was investigated, which increased the ionic shortcut current and decreased boundary layer resistance accordingly. Consequently, estimations on the trends in power output by changing operating parameters were made to determine the effective operation of RED.
机译:反向电渗析(RED)是一种可再生技术,可通过混合不同浓度的水来发电。在这项研究中,作者制造了实验室规模的RED,并尝试根据不同的操作参数评估RED的性能。首先,通过改变低盐度水的浓度来检查盐度比对RED性能的影响。通过增加开路电压(OCV)和具有盐度比的电池电阻来优化性能。通过电化学阻抗谱分析了各个电阻,并解决了它们对功率输出的影响。其次,研究了盐度溶液流速的影响,发现其影响了RED中的浓度极化。最后,研究了电极冲洗液流速的影响,这增加了离子短路电流并相应降低了边界层电阻。因此,通过改变运行参数对功率输出趋势进行了估算,以确定RED的有效运行。

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