Comparing Advanced Bipolar Membranes for High-Current Electrodialysis and Membrane Electrolysis
| Date Published |
02/14/2025
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|---|---|
| Publication Type | Journal Article
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| Authors | |
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| DOI |
10.1021/acsenergylett.4c03538
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| Abstract |
Advanced bipolar membranes (BPMs) with low water-dissociation overpotential (ηwd) may enable new electrochemical technologies for electrolysis, fuel cells, acid–base synthesis, brine remediation, lithium-battery recycling, and cement production. However, these advanced BPMs have only been demonstrated in BPM water electrolysis (BPMWE) configurations where the BPM is under static compression by the porous-transport layers. It is important to study these BPMs in applications like electrodialysis where large degrees of static compression are not possible. We present a BPM electrodialysis (BPMED) platform to measure water-dissociation overpotential (ηwd) and compare BPMWE and BPMED systems. We show advanced BPMs with half the ηwd compared to commercial BPMs for BPMED while maintaining ∼90% current efficiency from 0.05–0.5 A cm–2. The BPMED ηwd values are, however, about 0.2 V higher at 0.5 A cm–2 than those for BPMWE. Regardless, these results show that BPMs developed and optimized in BPMWE applications are well-suited for next-generation high-current-density BPMED technologies. |
| Journal |
ACS Energy Letters
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| Volume |
10
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| Year of Publication |
2025
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| Issue |
2
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| Pagination |
845-852
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| Publisher |
American Chemical Society (ACS)
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| ISSN Number |
2380-8195, 2380-8195
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