References
- J. Wan, G. Zhu, G. Li, Y. He, Study on the technic of Kai Film
Brine Refined, J. Salt Chem. Ind., 4 (2006) 1–3&9.
- Z. Ong, Y. Zhang, R. Cai, L. Wang, Q. Zhang, X. Huang, Study
on Ca2+, Mg2+ removal from salt type brine by NaOH and
Na2CO3 for saltwater production by nanofiltration, J. Salt Chem.
Ind., 4 (2013) 17–19.
- H. Zhao, Operation essentials for calcium/magnesium ion
adsorption by chelating resin, Guangzhou Chem. Ind., 13 (2011)
24–26.
- M.F.C. Arias, L.V. i Bru, D.P. Rico, P.V. Galvañ, Comparison of
ion exchange resins used in reduction of boron in desalinated
water for human consumption, Desalination, 278 (2011)
244–249.
- M. Arias-Paic, K.M. Cawley, S. Byg, F.L. Rosario-Ortiz,
Enhanced DOC removal using anion and cation ion exchange
resins, Water Res., 88 (2016) 981–989.
- R.E. Barker, K. Nuttall, G.J. Millar, Softening of coal seam gas
associated water with aluminium exchanged resins, J. Water
Process Eng., 21 (2018) 27–43.
- M.A.N. Camacho, A.I.G. López, A. Martinez-Ferez,
J.M. Ochando-Pulido, Two-phase olive-oil washing wastewater
treatment plus phenolic fraction recovery by novel ion
exchange resins process modelling and optimization, Sep. Purif.
Technol., 269 (2021) 118755, doi: 10.1016/j.seppur.2021.118755.
- M. Coca, S. Mato, G. González-Benito, M. Ángel Urueña,
M.T. García-Cubero, Use of weak cation exchange resin
Lewatit S 8528 as alternative to strong ion exchange resins for
calcium salt removal, J. Food Eng., 97 (2010) 569–573.
- Y. Fang, S. Zuo, X. Liang, Y. Cao, X. Gao, Z. Zhang, Preparation
and performance of desiccant coating with modified ion
exchange resin on finned tube heat exchanger, Appl. Therm.
Eng., 93 (2016) 36–42.
- M. Figueira, M. Reig, M. Fernández de Labastida, J.L. Cortina,
C. Valderrama, Boron recovery from desalination seawater
brines by selective ion exchange resin, J. Environ. Manage.,
314 (2022) 114984, doi: 10.1016/j.jenvman.2022.114984.
- J.A. Korak, A.L. Mungan, L.T. Watts, Critical review of waste
brine management strategies for drinking water treatment
using strong base ion exchange, J. Hazard. Mater., 441 (2023)
129473, doi: 10.1016/j.jhazmat.2022.129473.
- M. Laikhtman, J. Riviello, J.S. Rohrer, Determination
of magnesium and calcium in 30% sodium chloride by
ion chromatography with on-line matrix elimination,
J. Chromatogr., 816 (1998) 282–285.
- Z.Y. Leong, J. Zhang, S. Vafakhah, M. Ding, L. Guo, H.Y. Yang,
Electrochemically activated layered manganese oxide for
selective removal of calcium and magnesium ions in hybrid
capacitive deionization, Desalination., 520 (2021) 115374,
doi: 10.1016/j.desal.2021.115374.
- C. Boonpanaid, K. Piyamongkala, Using commercial resin for
ion exchange to remove hardness from domestic water supply,
Mater. Today: Proc., (2023), doi: 10.1016/j.matpr.2023.04.117
(in press).
- J. Liu, X. Qin, X. Feng, F. Li, J. Liang, D. Hu, Additive-optimized
micro-structure in cellulose acetate butyrate-based reverse
osmosis membrane for desalination, Chemosphere, 327 (2023)
138512, doi: 10.1016/j.chemosphere.2023.138512.
- Z. Mo, D. Li, Q. She, Semi-closed reverse osmosis (SCRO): a
concise, flexible, and energy-efficient desalination process,
Desalination., 544 (2022) 116147, doi: 10.1016/j.desal.2022.116147.
- R. Saeed, A.H. Konsowa, M.S. Shalaby, M.S. Mansour,
M.G. Eloffy, Optimization of integrated forward-reverse
osmosis desalination processes for brackish water, Alexandria
Eng. J., 63 (2023) 89–102.
- N.T. Thu, S. Patra, A. Pranudta, T.T. Nguyen, M.M. El-Moselhy,
S. Padungthon, Desalination of brackish groundwater
using self-regeneration hybrid ion exchange and reverse
osmosis system (HSIX-RO), Desalination, 550 (2023) 116378,
doi: 10.1016/j.desal.2023.116378.
- X. Zhang, J. Jiang, F. Yuan, W. Song, J. Li, D. Xing, L. Zhao,
W. Dong, X. Pan, X. Gao, Estimation of water footprint in
seawater desalination with reverse osmosis process, Environ.
Res., 204 (2022) 112374, doi: 10.1016/j.envres.2021.112374.
- S.K.A. Al-Amshawee, M.Y.B.M. Yunus, Electrodialysis
desalination: the impact of solution flowrate (or Reynolds
number) on fluid dynamics throughout membrane
spacers, Environ. Res., 219 (2023) 115115,
doi: 10.1016/j.envres.2022.115115.
- F. Giacalone, P. Catrini, L. Gurreri, A. Tamburini, A. Cipollina,
G. Micale, A. Piacentino, Exergy analysis of electrodialysis
for water desalination: influence of irreversibility sources,
Energy Convers. Manage., 258 (2022) 115314, doi: 10.1016/j.enconman.2022.115314.
- S. Honarparvar, R. Al-Rashed, A.G. Winter V, A comprehensive
investigation of performance of pulsed electrodialysis for
desalination of brackish water, Desalination, 547 (2023) 116240,
doi: 10.1016/j.desal.2022.116240.
- A. Rajput, P.P. Sharma, S.K. Raj, J. Kumari, M.S. Rathore,
V. Kulshrestha, Effect of environmental temperature and
applied potential on water desalination performance using
electrodialysis, Mater. Today Chem., 20 (2021) 100484,
doi: 10.1016/j.mtchem.2021.100484.
- M. Sedighi, M.M. Behvand Usefi, A.F. Ismail, M. Ghasemi,
Environmental sustainability and ions removal through
electrodialysis desalination: operating conditions and process
parameters, Desalination, 549 (2023) 116319, doi: 10.1016/j.desal.2022.116319.
- D. Ergenç, J. Feijoo, R. Fort, M. Alvarez de Buergo, Effects
of potassium ferrocyanide used for desalination on lime
composite performances in different curing regimes,
Constr. Build. Mater., 259 (2020) 120409, doi: 10.1016/j.conbuildmat.2020.120409.
- A. Masarwa, D. Meyerstein, N. Daltrophe, O. Kedem, Compact
accelerated precipitation softening (CAPS) as pretreatment for
membrane desalination II. Lime softening with concomitant
removal of silica and heavy metals, Desalination, 113 (1997)
73–84.
- W. Cai, M. Wang, G.Q. Yang, J. Li, High-performance
nanofiltration membranes with a polyamide-polyester
composite layer and a polydopamine surface layer for
desalination and dye pollutant removal, Polymer, 268 (2023)
125720, doi: 10.1016/j.polymer.2023.125720.
- J. Liu, A.A. Abdirahman, X. Wang, Y. Su, Assembly of
polyamide nanofilms for nanofiltration membranes with
ultra-high desalination performance, J. Membr. Sci., 671 (2023)
121399, doi: 10.1016/j.memsci.2023.121399.
- W. Song, N. Li, S. Ding, X. Wang, H. Li, Y. Zhang, X. Feng,
J. Lu, J. Ding, Nanofiltration desalination of reverse osmosis
concentrate pretreated by advanced oxidation with
ultrafiltration: response surface optimization and exploration
of membrane fouling, J. Environ. Chem. Eng., 9 (2021) 106340,
doi: 10.1016/j.jece.2021.106340.
- F. Yao, W. Zhang, D. Hu, S. Li, X. Kong, S. Uemura, T. Kusunose,
Q. Feng, Ultra-hydrophilic layered titanate nanosheet-based
nanofiltration membrane with ultrafast water transport for
low energy consumption desalination, Desalination, 544 (2022)
116144, doi: 10.1016/j.desal.2022.116144.
- J. Zhu, W. Meng, Q. Xue, K. Zhang, Two-dimensional sulfonated
molybdenum disulfide (S-MoS2) thin-film nanocomposite
nanofiltration membrane for selective desalination, J. Membr.
Sci., 676 (2023) 121574, doi: 10.1016/j.memsci.2023.121574.
- A.O. AlSuhaimi, S.M. AlRadaddi, A.K. Al-Sheikh Ali,
A.M. Shraim, T.S. AlRadaddi, Silica-based chelating resin
bearing dual 8-hydroxyquinoline moieties and its applications
for solid phase extraction of trace metals from seawater prior to
their analysis by ICP-MS, Arabian J. Chem., 12 (2019) 360–369.
- M. Oikawa, H. Takeuchi, D. Chikyu, T. Ohba, Z.-M. Wang,
S. Koura, Insight into the role of ionicity in the desalination
and separation of a graphene oxide membrane, Desalination,
552 (2023) 116433, doi: 10.1016/j.desal.2023.116433.
- X. Qin, X. Qin, X. Xu, J. Zhao, Y. Gui, H. Guo, J. Mao, Y. Wang,
Z. Zhang, The membrane-based desalination: focus on MOFs
and COFs, Desalination, 557 (2023) 116598, doi: 10.1016/j.desal.2023.116598.
- N.A. Shahrim, N.M. Abounahia, A.M.A. El-Sayed, H. Saleem,
S.J. Zaidi, An overview on the progress in produced water
desalination by membrane-based technology, J. Water Process
Eng., 51 (2023) 103479, doi: 10.1016/j.jwpe.2022.103479.
- H. Yuan, J. Liu, X. Zhang, L. Chen, Q. Zhang, L. Ma, Recent
advances in membrane-based materials for desalination
and gas separation, J. Cleaner Prod., 387 (2023) 135845,
doi: 10.1016/j.jclepro.2023.135845.
- S. Aly, H. Manzoor, S. Simson, A. Abotaleb, J. Lawler,
A.N. Mabrouk, Pilot testing of a novel multi effect distillation
(MED) technology for seawater desalination, Desalination,
519 (2021) 115221, doi: 10.1016/j.desal.2021.115221.
- A. Bamasag, E. Almatrafi, T. Alqahtani, P. Phelan, M. Ullah,
M. Mustakeem, M. Obaid, N. Ghaffour, Recent advances and
future prospects in direct solar desalination systems using
membrane distillation technology, J. Cleaner Prod., 385 (2023)
135737, doi: 10.1016/j.jclepro.2022.135737.
- F. Mahmoudi, H. Siddiqui, M. Pishbin, G. Goodarzi, S. Dehghani,
A. Date, A. Akbarzadeh, Sustainable seawater desalination
by permeate gap membrane distillation technology, Energy
Procedia, 110 (2017) 346–351.
- S. Atkinson, Ion exchangers make brine treatment using chloralkali
electrolysis more efficient, Membr. Technol., 3 (2019) 8,
doi: 10.1016/S0958-2118(19)30058-8.
- Y. Bai, Z. Chen, B. Liu, G. Huang, Structural properties
characterization and preparation of crosslinking carboxylic
fibers based on polyacrylonitrile fibers, Chin. Syn. Fiber Ind.,
243 (2019) 41.
- M. Bai, Z. Chen, G. Huang, D. Liu, Preparation of amine
chelating fiber and its adsorption properties for Cu2+, Chin. Syn.
Fiber Ind., 6 (2017) 28.
- D.-X. Liu, G. Xu, Z.-W. Chen, G.-Q. Huang, M.-H. Wu,
Outstanding adsorption characteristics of an aminophosphonic
acid chelating fiber for calcium and magnesium ions,
Desal. Water Treat., 295 (2023) 64–72.