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Title: Ion selectivity in capacitive deionization with functionalized electrode: Theory and experimental validation
Authors: Oyarzun, D.I.
Participants: Hemmatifar, A.
Palko, J.W.
Stadermann, M.
Santiago, J.G.
Issue Date: 2018
Series/Report no.: Water Research X, Volume 1, 1 December 2018, 100008
Abstract: We then set the cell voltage to a constant value to regenerate these electrodes, resulting in an inverted capacitive deionization (i-CDI) operation. Unlike resins, we avoid use of concentrated chemicals for regeneration. We measure the selectivity of nitrate versus chloride ions as a function of regeneration voltage and initial chloride concentration. We experimentally demonstrate up to about 6.5-fold (observable) selectivity in a cycle with a regeneration voltage of 0.4 V. We also demonstrate a novel multi-pass, air-flush i-CDI operation to selectively enrich nitrate with high water recovery. We further present a dynamic, multi-species electrosorption and equilibrium solution-to-surface chemical reaction model and validate the model with detailed measurements. Our i-CDI system exhibits higher nitrate selectivity at lower voltages; making it possible to reduce NaNO3 concentrations from ∼170 ppm to below the limit of maximum allowed values for nitrate in drinking water of about 50 ppm NaNO3.
URI: http://tailieuso.tlu.edu.vn/handle/DHTL/10082
Source: https://www.sciencedirect.com/science/article/pii/S2589914718300082
ISSN: 2589-9147
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