4.5 Article

Fouling Mitigation of Ion Exchange Membranes in Energy Conversion Devices

期刊

ENERGIES
卷 15, 期 1, 页码 -

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MDPI
DOI: 10.3390/en15010149

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ion exchange membrane; energy conversion; fouling; fouling mitigation

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This study introduces three environmentally friendly fouling mitigation technologies and evaluates their effectiveness in RED. It was found that alternating periods of power generation and fouling mitigation over five cycles resulted in 1.7 times higher power generation compared to continuous power generation cycles.
In this study, three different environmentally friendly fouling mitigation technologies are suggested and are investigated in reverse electrodialysis (RED) to develop the most appropriate fouling mitigation technology for RED: applying direct current, flowing a solution with high salt concentration, and periodically switching river and seawater streams in RED. The quantitative level of anion exchange membrane fouling mitigation is evaluated in terms of the power density and the amount of power generation of RED. Applying a direct current electric field with higher voltage than 8 V was not allowed for fouling mitigation in the two-cell-pair bench RED stack due to decomposition of the redox couple. In comparison of the RED operations with two different fouling mitigation methods using firstly 40-min power generation during in-operation and 40-min fouling mitigation stage during out-of-operation as a cycle for 80 min and secondly 80-min forward power generation and 80-min backward power generation as two cycles. It was found that, over five cycles, the amount of the RED power generation using the former fouling mitigation method is 1.7 times higher than RED power generation using the latter fouling mitigation method.

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