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The results in this work are especially useful for practical CDI units, where anode-cathode capacitance should be matched to achieve maximum salt removal efficiency.
No concentration polarization occurred due to using stirrers in the cell compartments and therefore, maximum salt removal of 90% was achieved after 120 min by applying a voltage of 20 V to the cell containing feed solution of 15 wt.% MgSt agitated at 250 rpm.
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Experimental characterization of the microfabricated salt removal devices includes two assessments: (1) the amount of salt removed is determined and (2) resulting improvement in the mass spectrum.
Seabirds have special salt-secreting glands over their eyes that handle salt removal.
We analyze salt removal rate and energy consumption.
Developing more efficient electrode materials is the key to improving salt removal performance.
Whereas the salt removal efficiency was negatively correlated with the ice yield rate: the more the ice yield, the lower the salt removal efficiency and vice versa.
Ions having larger radii showed less salt removal by hydrate formation, and salt removal decreased as the conversion of water to hydrate progressed.
The salt removal efficiency and specific electricity consumption (SEC) were determined at each stage.
As a result the optimum value of 93.28% salt removal efficiency was found.
However, salt removal was improved by washing treatment to nearly the same degree regardless of the kind of salt ions and the salt removal efficiency improved up to 42% more than that of filtration only.
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