References
- J. Li, Y. Li, G. Luo, A. Li, Research progress of sulfate organic
wastewater treatment by two-phase anaerobic process, Ind.
Water Wastewater, 47 (2016) 6–10.
- C. Nie, B. Wang, Research progresses in treatment of organic
wastewater by electrochemical process, Environ. Protect. Chem.
Ind., 31 (2011) 327–331.
- T. Benvenuti, R.S. Krapf, M.A.S. Rodrigues, A.M. Bernardes,
J. Zoppas-Ferreira, Recovery of nickel and water from nickel
electroplating wastewater by electrodialysis, Sep. Purif.
Technol., 129 (2014) 106–112.
- A. Abou-Shady, C.S. Peng, J. Almeria, H.Z. Xu, Effect of pH on
separation of Pb (II) and NO3– from aqueous solutions using
electrodialysis, Desalination, 285 (2012) 46–53.
- A. Abou-Shady, C.S. Peng, J.J. Bi, H.Z. Xu, J.A. O, Recovery
of Pb (II) and removal of NO3– from aqueous solutions using
integrated electrodialysis, electrolysis, and adsorption process,
Desalination, 286 (2012) 304–315.
- N. Kabay, O. Ipek, H. Kahveci, M. Yuksel, Effect of salt
combination on separation of monovalent and divalent salts by
electrodialysis, Desalination, 198 (2006) 84–91.
- N. Kabay, H. Kahveci, O. Ipek, M. Yuksel, Separation of
monovalent and divalent ions from ternary mixtures by
electrodialysis, Desalination, 198 (2006) 74–83.
- S. Mafe, P. RamiRez, A. Alcaraz, Electric field-assisted proton
transfer and water dissociation at the junction of a fixed-charge
bipolar membrane, Chem. Phys. Lett., 294 (1998) 406–412.
- C.H. Huang, T.W. Xu, Y.P. Zhang, Y.H. Xue, G.W. Chen,
Application of electrodialysis to the production of organic
acids: state-of-the-art and recent developments, J. Membr. Sci.,
288 (2007) 1–12.
- K. Zhang, M. Wang, D. Wang, C.J. Gao, The energy-saving
production of tartaric acid using ion exchange resin-filling
bipolar membrane electrodialysis, J. Membr. Sci., 341 (2009)
246–251.
- J.S.J. Ferrer, S. Laborie, G. Durand, M. Rakib, Formic acid
regeneration by electromembrane processes, J. Membr. Sci., 280
(2006) 509–516.
- X.L. Wang, Y.M. Wang, X. Zhang, T.W. Xu, In situ combination
of fermentation and electrodialysis with bipolar membranes
for the production of lactic acid: operational compatibility and
uniformity, Bioresour. Technol., 125 (2012) 165–171.
- X.P. Zhu, M.C. Hatzell, R.D. Cusick, B.E. Logan, Microbial
reverse-electrodialysis chemical-production cell for acid and
alkali production, Electrochem. Commun., 31 (2013) 52–55.
- J.N. Shen, J. Yu, J. Huang, B. Van der Bruggen, Preparation
of highly pure tetrapropyl ammonium hydroxide using
continuous bipolar membrane electrodialysis, Chem. Eng. J.,
220 (2013) 311–319.
- J.S. Jaime-Ferrer, E. Couallier, P. Viers, M. Rakib, Twocompartment
bipolar membrane electrodialysis for splitting
of sodium formate into formic acid and sodium hydroxide:
modelling, J. Membr. Sci., 328 (2009) 75–80.
- K. Ravikumar, S. Ramalingam, S. Krishnan, K. Balu, Application
of response surface methodology to optimize the process
variables for Reactive Red and Acid Brown dye removal using a
novel adsorbent, Dyes Pigm., 70 (2006) 18–26.
- M.A. Ben Ali, M. Rakib, S. Laborie, P. Viers, G. Durand, Coupling
of bipolar membrane electrodialysis and ammonia stripping for
direct treatment of wastewaters containing ammonium nitrate,
J. Membr. Sci., 244 (2004) 89–96.
- S. Novalic, J. Okwor, K.D. Kulbe, The characteristics of citric
acid separation using electrodialysis with bipolar membranes,
Desalination, 105 (1996) 277–282.
- M.L. Lameloise, R. Lewandowski, Recovering L-malic acid
from a beverage industry waste water: experimental study of
the conversion stage using bipolar membrane electrodialysis, J.
Membr. Sci., 403 (2012) 196–202.
- J. Dai, X. Yan, Y. Li, S. Zhang, Research progress in the
wastewater treatment technology based on sulfur cycle-SANI
technology, Ind. Water Treat., 37 (2017) 18–23.
- C.S. Peng, Y.Y. Liu, J.J. Bi, H.Z. Xu, A.S. Ahmed, Recovery of
copper and water from copper-electroplating wastewater by
the combination process of electrolysis and electrodialysis, J.
Hazard. Mater., 189 (2011) 814–820.
- C. Jiang, Y. Wang, Q. Wang, H. Feng, T. Xu, Production of lithium
hydroxide from lake brines through electro–electrodialysis with
bipolar membranes (EEDBM), Ind. Eng. Chem. Res., 53 (2014)
6103–6112.
- S. Xue, C. Wu, Y. Wu, C. Zhang, An optimized process for treating
sodium acetate waste residue: coupling of diffusion dialysis or
electrodialysis with bipolar membrane electrodialysis, Chem.
Eng. Res. Design, 129 (2018) 237–247.