Doubled power density from salinity gradients at reduced intermembrane distance

David Vermaas, Michel Saakes, Dorothea C. Nijmeijer

Research output: Contribution to journalArticleAcademicpeer-review

224 Citations (Scopus)
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Abstract

The mixing of sea and river water can be used as a renewable energy source. The Gibbs free energy that is released when salt and fresh water mix can be captured in a process called reverse electrodialysis (RED). This research investigates the effect of the intermembrane distance and the feedwater flow rate in RED as a route to double the power density output. Intermembrane distances of 60, 100, 200, and 485 μm were experimentally investigated, using spacers to impose the intermembrane distance. The generated (gross) power densities (i.e., generated power per membrane area) are larger for smaller intermembrane distances. A maximum value of 2.2 W/m2 is achieved, which is almost double the maximum power density reported in previous work. In addition, the energy efficiency is significantly higher for smaller intermembrane distances. New improvements need to focus on reducing the pressure drop required to pump the feedwater through the RED-device using a spacerless design. In that case power outputs of more than 4 W per m2 of membrane area at small intermembrane distances are envisaged
Original languageEnglish
Pages (from-to)7089-7095
JournalEnvironmental science & technology
Volume45
Issue number16
DOIs
Publication statusPublished - 2011

Keywords

  • IR-90481
  • METIS-282839

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