References
- S. Dasgupta, F. Akhter, K. Zahirul, Z. Khan, S. Choudhury,
A. Nishat, River Salinity and Climate Change Evidence from
Coastal Bangladesh, 2014. Available at: http://econ.worldbank.
org (accessed August 23, 2018).
- D. Wheeler, Quantifying Vulnerability to Climate Change:
Implications for Adaptation Assistance, Washington DC, 2011.
Available at: http://www.cgdev.org/content/publications/detail/
1424759 (accessed August 24, 2018).
- L.H.E. Winkel, P.T.K. Trang, V.M. Lan, C. Stengel, M. Amini,
N.T. Ha, P.H. Viet, M. Berg, Arsenic pollution of groundwater in
Vietnam exacerbated by deep aquifer exploitation for more than
a century, Proc. Natl. Acad. Sci. U.S.A., 108 (2011) 1246–1251.
- D. Chakraborti, M.M. Rahman, A. Mukherjee, M. Alauddin,
M. Hassan, R.N. Dutta, S. Pati, S.C. Mukherjee, S. Roy,
Q. Quamruzzman, M. Rahman, S. Morshed, T. Islam, S. Sorif,
M. Selim, M.R. Islam, M.M. Hossain, Groundwater arsenic
contamination in Bangladesh—21 years of research, J. Trace
Elem. Med. Biol., 31 (2015) 237–248.
- S. Bhowmick, S. Pramanik, P. Singh, P. Mondal, D. Chatterjee,
J. Nriagu, Arsenic in groundwater of West Bengal, India: a
review of human health risks and assessment of possible
intervention options, Sci. Total Environ., 612 (2018) 148–169.
- D. Chakraborti, M.M. Rahman, B. Das, M. Murrill, S. Dey,
S. Chandra Mukherjee, R.K. Dhar, B.K. Biswas, U.K. Chowdhury,
S. Roy, S. Sorif, M. Selim, M. Rahman, Q. Quamruzzaman,
Status of groundwater arsenic contamination in Bangladesh:
a 14-year study report, Water Res., 44 (2010) 5789–5802.
- L. Zhang, X. Qin, J. Tang, W. Liu, H. Yang, Review of arsenic
geochemical characteristics and its significance on arsenic
pollution studies in karst groundwater, Southwest China, Appl.
Geochem., 77 (2017) 80–88.
- A. Sarkar, B. Paul, The global menace of arsenic and its
conventional remediation - a critical review, Chemosphere,
158 (2016) 37–49.
- M. Amini, K.C. Abbaspour, M. Berg, L. Winkel, S.J. Hug,
E. Hoehn, H. Yang, C.A. Johnson, Statistical modeling of global
geogenic arsenic contamination in groundwater, Environ. Sci.
Technol., 42 (2008) 3669–3675.
- M. Berg, C. Stengel, P.T.K. Trang, P. Hung Viet, M.L. Sampson,
M. Leng, S. Samreth, D. Fredericks, Magnitude of arsenic
pollution in the Mekong and Red River Deltas - Cambodia and
Vietnam, Sci. Total Environ., 372 (2007) 413–425.
- K.M. Campbell, D.K. Nordstrom, Arsenic speciation and
sorption in natural environments, Rev. Mineral. Geochem.,
79 (2014) 185–216.
- J. Norrman, C.J. Sparrenbom, M. Berg, D.N. Dang, G. Jacks,
P. Harms-Ringdahl, Q.N. Pham, H. Rosqvist, Tracing sources
of ammonium in reducing groundwater in a well field in
Hanoi (Vietnam) by means of stable nitrogen isotope (δ15N)
values, Appl. Geochem., 61 (2015) 248–258.
- Y. Jia, B. Xi, Y. Jiang, H. Guo, Y. Yang, X. Lian, S. Han,
Distribution, formation and human-induced evolution of
geogenic contaminated groundwater in China: a review, Sci.
Total Environ., 643 (2018) 967–993.
- S. Datta, K. Johannesson, N. Mladenov, M. Sankar, S. Ford,
M. Vega, A. Neal, M. Kibria, A. Krehel, G. Hettiarachchi,
Groundwater-Sediment Sorption Mechanisms and Role of
Organic Matter in Controlling Arsenic Release into Aquifer
Sediments of Murshidabad Area (Bengal basin), India,
Proceedings of the 5th International Congress on Arsenic in
the Environment, May 11-16, 2014, Buenos Aires, Argentina, In:
One Century of the Discovery of Arsenicosis in Latin America
(1914–2014) As 2014, Taylor & Francis, London, 2014, pp. 95–97.
- M. Berg, P.T.K. Trang, C. Stengel, J. Buschmann, P.H. Viet,
N. Van Dan, W. Giger, D. Stüben, Hydrological and sedimentary
controls leading to arsenic contamination of groundwater in the
Hanoi area, Vietnam: the impact of iron-arsenic ratios, peat,
river bank deposits, and excessive groundwater abstraction,
Chem. Geol., 249 (2008) 91–112.
- E.E. Cañas Kurz, V.T. Luong, U. Hellriegel, F. Leidinger, T.L.
Luu, J. Bundschuh, J. Hoinkis, Iron-based subsurface arsenic
removal (SAR): results of a long-term pilot-scale test in Vietnam,
Water Res., 181 (2020) 115929, https://doi.org/10.1016/j.
watres.2020.115929.
- A.G. Volkov, D.W. Deamer, Liquid-Liquid Interfaces: Theory
and Methods, CRC Press, 1996. Available at: https://www.crcpress.com/Liquid-Liquid-InterfacesTheory-and-Methods/Volkov-Deamer/p/book/9780849376948 (accessed August 28,
2018).
- J. Mähler, I. Persson, R.B. Herbert, Hydration of arsenic
oxyacid species, Dalton Trans., 42 (2013) 1364–1377.
- C.-H. Hou, C.-Y. Huang, A comparative study of electrosorption
selectivity of ions by activated carbon electrodes in capacitive
deionization, Desalination, 314 (2013) 124–129.
- M. Mossad, L. Zou, A study of the capacitive deionisation
performance under various operational conditions, J. Hazard.
Mater., 213–214 (2012) 491–497.
- C.-S. Fan, S.-C. Tseng, K.-C. Li, C.-H. Hou, Electro-removal of
arsenic(III) and arsenic(V) from aqueous solutions by capacitive
deionization, J. Hazard. Mater., 312 (2016) 208–215.
- Z. Chen, H. Zhang, C. Wu, Y. Wang, W. Li, A study of
electrosorption selectivity of anions by activated carbon
electrodes in capacitive deionization, Desalination, 369 (2015)
46–50.
- Y. Li, C. Zhang, Y. Jiang, T.J. Wang, H. Wang, Effects of the
hydration ratio on the electrosorption selectivity of ions during
capacitive deionization, Desalination, 399 (2016) 171–177.
- P. Xu, J.E. Drewes, D. Heil, G. Wang, Treatment of brackish
produced water using carbon aerogel-based capacitive
deionization technology, Water Res., 42 (2008) 2605–2617.
- J. Kielland, Individual activity coefficients of ions in aqueous
solutions, J. Am. Chem. Soc., 59 (1937) 1675–1678.
- 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.
- R. Zhao, M. van Soestbergen, H.H.M. Rijnaarts, A. van der Wal,
M.Z. Bazant, P.M. Biesheuvel, Time-dependent ion selectivity
in capacitive charging of porous electrodes, J. Colloid Interface
Sci., 384 (2012) 38–44.
- J.M. Hales, D.R. Drewes, Solubility of ammonia in water at
low concentrations, Atmos. Environ., 13 (1979) 1133–1147.
- J.E. Dykstra, K.J. Keesman, P.M. Biesheuvel, A. van der Wal,
Theory of pH changes in water desalination by capacitive
deionization, Water Res., 119 (2017) 178–186.