References
- J.C. Farmer, D.V. Fix, G.V. Mack, R.W. Pekala, J.F. Poco, Capacitive
deionization of NaCl and NaNO3 solutions with carbon
aerogel electrodes, J. Electrochem. Soc., 143 (1996) 159–169.
- M.W. Ryoo, G. Seo, Improvement in capacitive deionization
function of activated carbon cloth by titania modification,
Water Res., 37 (2003) 1527–1534.
- T.J. Welgemoed, C.F. Schutte, Capacitive deionization technologyTM:
an alternative desalination solution, Desalination, 183
(2005) 327–340.
- Y. Oren, Capacitive deionization (CDI) for desalination and
water treatment – past, present and future (a review), Desalination,
228 (2008) 10–29.
- M.A. Anderson, A.L. Cudero, J. Palma, Capacitive deionization
as an electrochemical means of saving energy and delivering
clean water. Comparison to present desalination practices: will
it compete? Electrochim. Acta, 55 (2010) 3845–3856.
- H. Li, L. Zou, Ion-exchange membrane capacitive deionization:
a new strategy for brackish water desalination, Desalination,
275 (2011) 62–66.
- R. Zhao, O. Satpradit, H.H.M. Rijnaarts, P.M. Biesheuvel, A.
van der Wal, Optimization of salt adsorption rate in membrane
capacitive deionization, Water Res., 47 (2013) 1941–1952.
- S. Porada, R. Zhao, A. van der Wal, V. Presser, P.M. Biesheuvel,
Review on the science and technology of water desalination by
capacitive deionization, Prog. Mater. Sci., 58 (2013) 1388–1442.
- S. Porada, J. Lee, D. Weingarth, V. Presser, Continuous operation
of an electrochemical flow capacitor, Electrochem. Commun.,
48 (2014) 178–181.
- C. Huyskens, J. Helsen, W.J. Groot, A.B. de Haan, Cost evaluation
of large-scale membrane capacitive deionization for biomass
hydrolysate desalination, Sep. Purif. Technol., 146 (2015)
294–300.
- H. Li, L. Pan, T. Lu, Y. Zhan, C. Nie, Z. Sun, A comparative
study on electrosorptive behavior of carbon nanotubes and
graphene for capacitive deionization, J. Electroanal. Chem.,
653 (2011) 40–44.
- H. Li, Y. Gao, L. Pan, Y. Zhang, Y. Chen, Z. Sun, Electrosorptive
desalination by carbon nanotubes and nanofibres electrodes
and ion-exchange membranes, Water Res., 42 (2008) 4923–4928.
- C.J. Gabelich, T.D. Tran, I.H. “MEL” Suffet, Electrosorption of
inorganic salts from aqueous solution using carbon aerogels,
Environ. Sci. Technol., 36 (2002) 3010–3019.
- L. Zou, L. Li, H. Song, G. Morris, Using mesoporous carbon
electrodes for brackish water desalination, Water Res., 42
(2008) 2340–2348.
- L. Chang, J. Li, X. Duan, W. Liu, Porous carbon derived from
metal-organic framework (MOF) for capacitive deionization
electrode, Electrochim. Acta, 176 (2015) 956–964.
- S. Daer. J. Kharraz, A. Giwa, S.W. Hasan, Recent applications
of nanomaterials in water desalination: A critical review and
future opportunities, Desalination, 367 (2015) 37–48.
- Y.J. Kim, J.H. Choi, Selective removal of nitrate ion using a
novel composite carbon electrode in capacitive deionization,
Water Res., 46 (2012) 6033–6039.
- W. Tang, P. Kovalsky, D. He, T.D. Waite, Fluoride and nitrate
removal from brackish groundwaters by batch-mode capacitive
deionization, Water Res., 84 (2015) 342–349.
- S.J. Seo, H. Jeon, J.K. Lee, G.Y. Kim, D.W. Park, H. Hojima, J.Y.
Lee, S.H. Moon, Investigation on removal of hardness ions by
capacitive deionization (CDI) for water softening applications,
Water Res., 44 (2010) 2267–2275.
- Y.J. Kim, J.H. Kim, J.H. Choi, Selective removal of nitrate ions
by controlling the applied current in membrane capacitive
deionization (MCDI), J. Membr. Sci., 429 (2013) 52–57.
- R. Zhao, P.M. Biesheuvel, H. Miedema, H. Bruning, A. van
der Wal, Charge efficiency: a functional tool to probe the double-layer structure inside of porous electrodes and application
in the modeling of capacitive deionization, J. Phys. Chem.
Lett., 1 (2010) 205–210.
- P.M. Biesheuvel, A. van der Wal, Membrane capacitive deionization,
J. Membr. Sci., 346 (2009) 256–262.
- M.D. Andelman, Charge barrier flow-through capacitor, CA
Patent 2444390 (2002).
- R. Zhao, P.M. Biesheuvel, A. van der Wal, Energy consumption
and constant current operation in membrane capacitive
deionization, Energy Environ. Sci., 5 (2012) 9520–
9527.
- Y.J. Kim, J.H. Choi, Enhanced desalination efficiency in capacitive
deionization with an ion-selective membrane, Sep. Purif.
Technol., 71 (2010) 70–75.
- J.H. Choi, Determination of the electrode potential causing
Faradaic reactions in membrane capacitive deionization,
Desalination, 347 (2014) 224–229.
- H. Strathmann, Ion-Exchange Membrane Separation Processes,
Elsevier, Amsterdam, 2004.
- D.R. Crow, Principles and applications of electrochemistry,
Blackie Academic & Professional, London, 1994.