References
- H.J. Tanudjaja, C.A. Hejase, V.V. Tarabara, A.G. Fane, J.W. Chew,
Membrane-based separation for oily wastewater: a practical
perspective, Water Res., 156 (2019) 347–365.
- K. Ghyselbrecht, M. Huygebaert, B.V.D. Bruggen, R. Ballet,
B.W. Meesschaert, L. Pinoy, Desalination of an industrial saline
water with conventional and bipolar membrane electrodialysis,
Desalination, 318 (2013) 9–18.
- B.L. Chen, C.X. Jiang, Y.M. Wang, R.Q. Fu, Z.M. Liu, T.W. Xu,
Selectrodialysis with bipolar membrane for the reclamation
of concentrated brine from RO plant, Desalination, 442 (2018)
8–15.
- Z.Y. Liu, Y.W. Zhang, X.L. Lu, X. Wang, X.D. Zhao, Study of
the bubble membrane crystallization process for zero-brine
discharge, J. Membr. Sci., 563 (2018) 584–591.
- Z.H.I. Sun, Y. Xiao, J. Sietsma, H. Agterhuis, Y. Yang, Complex
electronic waste treatment-an effective process to selectively
recover copper with solutions containing different ammonium
salts, Waste Manage., 57 (2016) 140–148.
- X. Tan, I. Acquah, H.Z. Liu, W.G. Li, S.W. Tan, A critical review
on saline wastewater treatment by membrane bioreactor
(MBR) from a microbial perspective, Chemosphere, 220 (2019)
1150–1162.
- Y.X. Wei, Y.M. Wang, X. Zhang, T.X. Xu, Comparative study
on regenerating sodium hydroxide from the spent caustic
by bipolar membrane electrodialysis (BMED) and electroelectrodialysis
(EED), Sep. Purif. Technol., 118 (2013) 1–5.
- S. Caprarescu, M.C. Corobea, V. Purcar, C.I. Spataru, R. Ianchis,
G. Vasilievici, Z. Vuluga, San copolymer membranes with ion
exchangers for Cu (II) removal from synthetic wastewater by
electrodialysis, J. Environ. Sci., 35 (2015) 27–37.
- K.J. Yang, Y.F. Zhang, L.H. Zhua, Z.T. Li, B.L. Deng, Omethoate
treatment mitigates high salt stress inhibited maize seed
germination, Pestic. Biochem. Phys., 144 (2018) 79–82.
- M. Reig, C. Valderrama, O. Gibert, J.L. Cortina, Selectrodialysis
and bipolar membrane electrodialysis combination for
industrial process brines treatment: monovalent-divalent
ions separation and acid and base production, Desalination,
399 (2016) 88–95.
- K. Ghyselbrecht, A. Silva, D.B.B. Van, K. Boussu, B. Meesschaert,
L. Pinoy, Desalination feasibility study of an industrial NaCl
stream by bipolar membrane electrodialysis, J. Environ.
Manage., 140 (2014) 69–75.
- J.R. Davis, Y. Chen, J.C. Baygents, J. Farrell, Production of
acids and bases for ion exchange regeneration from dilute salt
solutions using bipolar membrane electrodialysis, ACS Sustain.
Chem. Eng., 3 (2015) 2337–2342.
- G.L. Liu, H.P. Luo, H.H. Wang, B.W. Wang, R.D. Zhang,
S.S. Chen, Malic acid production using a biological electrodialysis
with bipolar membrane, J. Membr. Sci., 471 (2014) 179–184.
- J.N. Shen, J. Huang, L.F. Liu, W.Y. Ye, J.Y. Lin, B.V. de Bruggen,
The use of BMED for glyphosate recovery from glyphosate
neutralization liquor in view of zero discharge, J. Hazard.
Mater., 260 (2013) 660–667.
- Y. Li, S.Y. Shi, H.B. Cao, X.M. Wu, Z.J. Zhao, L.Y. Wang, Bipolar
membrane electrodialysis for generation of hydrochloric acid
and ammonia from simulated ammonium chloride wastewater,
Water Res., 89 (2016) 201–209.
- C. Fernandez-Gonzalez, A. Dominguez-Ramos, R. Ibañez,
Y.S. Chen, A. Irabien, Valorization of desalination brines by
electrodialysis with bipolar membranes using nanocomposite
anion exchange membranes, Desalination, 406 (2017) 16–24.
- Y. Lv, H.Y. Yan, B.J. Yang, C.M. Wu, X. Zhang, X.L. Wang,
Bipolar membrane electrodialysis for the recycling of
ammonium chloride wastewater: membrane selection and
process optimization, Chem. Eng. Res. Des., 138 (2018)
105–115.
- A.T.K. Tran, P. Mondal, J.Y. Lin, B. Meesschaert, L. Pinoy,
B.V. de Bruggen, Simultaneous regeneration of inorganic
acid and base from a metal washing step wastewater by
bipolar membrane electrodialysis after pretreatment by
crystallization in a fluidized pellet reactor, J. Membr. Sci.,
473 (2015) 118–127.
- S. Xue, C.M. Wu, Y.H. Wu, C.Y. Zhang, An optimized process
for treating sodium acetate waste residue: coupling of
diffusion dialysis or electrodialysis with bipolar membrane
electrodialysis, Chem. Eng. Res. Des., 129 (2018) 237–247.
- J.N. Shen. Z.D. Hou, C.J. Gao, Using bipolar membrane
electrodialysis to synthesize di-quaternary ammonium
hydroxide and optimization design by response surface
methodology, Chin. J. Chem. Eng., 25 (2017) 1176–1181.
- M. Szczygiełda, K. Prochaska, Alpha-ketoglutaric acid
production using electrodialysis with bipolar membrane,
J. Membr. Sci., 536 (2017) 37–43.
- L. Yang, J.C. Yao, J.D. Wang, Desalination of concentrated
wastewater from reverse osmosis by bipolar membrane
electrodialysis, Desal. Wat. Treat., 98 (2017) 108–114.
- X.Y. Zhang, W.H. Lu, P.B. Yang, W. Cong, Application of
response surface methodology to optimize the operation
process for regeneration of acid and base using bipolar
membrane electrodialysis, Chem. Technol. Biotechnol.,
83 (2008) 12–19.
- S.J. Wu, X. Yu, Z.H. Hu, L.L. Zhang, J.M. Chen, Optimizing
aerobic biodegradation of dichloromethane using response
surface methodology, J. Environ. Sci., 21 (2009) 1276–1283.
- Z. Urkut, P. Kara, Y. Goksungur, M. Ozsoz, Response surface
methodology for optimization of food borne pathogen detection
in real samples based on label free electrochemical nucleic acid
biosensors, Electroanalysis, 23 (2011) 2668–2676.
- W.Y. Ye, J. Huang, J.Y. Lin, X. Zhang, J.N. Shen, P. Luis,
B.V.D. Bruggen, Environmental evaluation of bipolar membrane
electrodialysis for NaOH production from wastewater:
conditioning NaOH as a CO2 absorbent, Sep. Purif. Technol.,
144 (2015) 206–214.
- O. Ocholi, M. Menkiti, M. Auta, I. Ezemagu, Optimization of the
operating parameters for the extractive synthesis of biolubricant
from sesame seed oil via response surface methodology, Egypt.
J. Pet., 27 (2018) 265–275.
- T.W. Xu, W.H. Yang, Citric acid production by electrodialysis
with bipolar membranes, Chem. Eng. Process., 41 (2002)
519–524.
- M.N. Priya, K. Palanivelu, Removal of total dissolved solids
with simultaneous recovery of acid and alkali using bipolar
membrane electrodialysis-Application to RO reject of textile
effluent, Indian J. Chem. Technol., 13 (2006) 262–268.
- Y.X. Wei, Y.M. Wang, X. Zhang, T.W. Xu, Treatment of simulated
brominated butyl rubber wastewater by bipolar membrane
electrodialysis, Sep. Purif. Technol., 80 (2011) 196–201.
- Y.X. Wei, Y.M. Wang, X. Zhang, T.W. Xu, Comparative study
on the treatment of simulated brominated butyl rubber
wastewater by using bipolar membrane electrodialysis (BMED)
and conventional electrodialysis (ED), Sep. Purif. Technol.,
110 (2013) 164–169.
- F. Wilhelm, N.V.D. Vegt, M. Wessling, H. Strathmann,
Chronopotentiometry for the advanced current-voltage
characterisation of bipolar membranes, J. Electroanal. Chem.,
502 (2001) 152–166.
- J.B. Zhou, X.S. Mu, L.P. Gao, S. Hao, Y. Liu, W.J. Huang,
Application research on desalination of trona brine by bipolar
membrane electrodialysis, Int. J. Electrochem. Sci., 9 (2014)
2912–2921.
- T. Chakrabarty, A.M. Rajesh, A. Jasti, A.K. Thakur,
A.K. Singh, S. Prakash, V. Kulshrestha, V.K. Shahi, Stable ionexchange
membranes for water desalination by electrodialysis,
Desalination, 282 (2011) 2–8.
- V. García, J. Landaburu-Aguirre, E. Pongrácz, P. Perämäki,
R.L. Keiski, Dehydration of water/dichloromethane/n-butanol
mixtures by pervaporation; optimization and modelling by
response surface methodology, J. Membr. Sci., 338 (2009)
111–118.
- K.N. Kontogiannopoulos, S.I. Patsios, A.J. Karabelas, Tartaric
acid recovery from winery lees using cation exchange resin:
optimization by response surface methodology, Sep. Purif.
Technol., 165 (2016) 32–41.
- S. Xue, C.M. Wu, Y.H. Wu, J. Chen, Z.X. Li, Bipolar membrane
electrodialysis for treatment of sodium acetate waste residue,
Sep. Purif. Technol., 154 (2015) 193–203.