References
- Arora, M.B., Hestekin, J.A., Snyder, S.W., Martin, E.J.S., Lin, Y.J., Donnelly, M.I. and Millard, C.S. (2007), "The separative bioreactor: A continuous separation process for the simultaneous production and direct capture of organic acids", Separ. Sci. Technol., 42(11), 2519-2538. https://doi.org/10.1080/01496390701477238
-
Basta, K., Aliane, A., Lounis, A., Sandeaux, R., Sandeaux, J. and Gavach, C. (1998), "Electroextraction of
$Pb^{2+}$ ions from diluted solutions by a process combining ion-exchange textiles and membranes", Desalination, 120(3), 175-184. https://doi.org/10.1016/S0011-9164(98)00216-1 - Beattie, D. (2001), "Using RO/CEDI to meet USP 24 on chloraminated feed water", The Ultrapure Water Expo Technical Program, Philadelphia, PA, USA, April.
- Bi, J., Peng, C., Xu, H. and Ahmed, A.S. (2011), "Removal of nitrate from groundwater using the technology of electrodialysis and electrodeionization", Desal. Water Treat., 34(1-3), 394-401. https://doi.org/10.5004/dwt.2011.2891
- Bouhidel, K.E. and Lakehal, A. (2006), "Influence of voltage and flow rate on electrodeionization (EDI) process efficiency", Desalination, 193(1-3), 411-421. https://doi.org/10.1016/j.desal.2005.08.027
- Danielsson, C.O., Dahlkild, A., Velin, A. and Behm, M. (2009), "A model for the enhanced water dissociation on monopolar membranes", Electro. Acta, 54(11), 2983-2991. https://doi.org/10.1016/j.electacta.2008.12.025
- Decker, R. (2010), "An introduction to electrodeionization treatment technology", Ultrapure Water, 27(6), 33-35.
- Dejean, E., Sandeaux, J., Sandeaux, R. and Gavach, C. (1998), "Water demineralization by electrodeionization with ion-exchange textiles. Comparison with conventional electrodialysis", Separ. Sci. Technol., 33(6), 801-818. https://doi.org/10.1080/01496399808544877
- Dey, A. (2005), "SWEDI: A More Forgiving Electrodeionization Technology With Higher Feed Water Hardness Tolerance", Water Condition. Purif., June, 32-40.
- Dey, A. and Tate, J. (2005a), "Part 1: A review of spiral-wound electrodeionization technology", Ultrapure Water, 22(5), 20-29.
- Dey, A. and Tate, J. (2005b), "Part 2: A comparison between spiral-wound and plate-and-frame EDI technologies", Ultrapure Water, 22(6), 47-49+51-52.
- DiMascio, F. and Ganzi, G.C. (1999), "Electrodeionization apparatus and method", US Patent: 5,858,191.
- DiMascio, F., Wood, J. and Fenton, J.M. (1998), "Continuous electrodeionization: production of high-purity water without regeneration chemicals", Electro. Soc. Interf., 7(3), 26-29.
- DiMascio, F., Jha, A., Ganzi, G.C. and Wilkins, F. (2003), "Electrodeionization apparatus and method", US Patent: 6,514,398.
- Du, J., Lorenz, N., Beitle, R.R. and Hestekin, J.A. (2012), "Application of wafer-enhanced electrodeionization in a continuous fermentation process to produce butyric acid with clostridium tyrobutyricum", Separ. Sci. Technol., 47(1), 43-51. https://doi.org/10.1080/01496395.2011.618170
- Eliseeva, T.V., Shaposhnik, V.A., Krisilova, E.V. and Bukhovets, A.E. (2009), "Transport of basic amino acids through the ion-exchange membranes and their recovery by electrodialysis", Desalination, 241(1-3), 86-90. https://doi.org/10.1016/j.desal.2008.02.030
- Elleuch, M.B.C., Amor, M.B. and Pourcelly, G. (2006), "Phosphoric acid purification by a membrane process: Electrodeionization on ion-exchange textiles", Separ. Purif. Technol., 51(3), 285-290. https://doi.org/10.1016/j.seppur.2006.02.009
- Ervan, Y. and Wenten, I.G. (2002), "Study on the influence of applied voltage and feed concentration on the performance of electrodeionization", Songklanakarin J. Sci. Technol., 24, 955-963.
- Fedorenko, V.I. (2003), "Ultrapure water production using continuous electrodeionization", Pharma. Chem. J., 37(3), 157-160. https://doi.org/10.1023/A:1024598900912
- Fedorenko, V.I. (2004), "Ultrapure water production by continuous electrodeionization method: technology and economy", Pharma. Chem. J., 38(1), 35-40. https://doi.org/10.1023/B:PHAC.0000027643.24808.81
- Fei, Z., Wang, J., Chen, W. and Fan, G. (2012), "Degradation of anion exchange membrane and its influences on water decomposition in electrodeionization process", Huagong Xuebao/CIESC J., 63(11), 3560-3566.
- Feng, X., Gao, J.S. and Wu, Z.C. (2008), "Removal of copper ions from electroplating rinse water using electrodeionization", J. Zhejiang Univ.: Sci. A, 9(9), 1283-1287. https://doi.org/10.1631/jzus.A0820166
- Feng, D.J., Guan, S. and Zhang, J.M. (2010), "Influence of ion exchange resin on performance of layered-bed EDI process", J. Tianjin Polytech. Univ., 29(6), 9-12.
- Franzreb, M. (2006), "Device for magnetically controlled electrodeionization", US Patent: 6,991,716.
- Fu, L. and Wang, J.Y. (2008), "Recent research progress in electrodeionization process and its application", Xiandai Huagong/Modern Chem. Ind., 28(7), 16-21+23.
- Fulde, T. (2004), "Part 2: Implementation of a high-purity water system in a 300-mm fab", Ultrapure Water, 21(9), 33-37.
- Ganzi, G.C., Egozy, Y., Giuffrida, A.J. and Jha, A.D. (1987), "High purity water by electrodeionisation: Performance of the Ionpure (TM) continuous deionisation system", Ultrapure Water, 4(3), 43-50.
- Ganzi, G.C., Wood, J.H. and Griffin, C.S. (1992), "Water purification and recycling using the CDI process", Environ. Prog., 11(1), 49-53. https://doi.org/10.1002/ep.670110117
- Ganzi, G.C., Walkins, F. and Giuffrida, A.J. (2001), "Continuous electrodeionization apparatus and method", US Patent: 6,312,577.
- Garcia, M.L. and Lehtinen, M. (2010), "Dow TM EDI modules perform well at bioenergy combines in Scandinavia", Desal. Water Treat., 14, 127-134. https://doi.org/10.5004/dwt.2010.1111
- Gayathri, R. and Kumar, P.S. (2010), "Recovery and reuse of hexavalent chromium from aqueous solutions by a hybrid technique of electrodialysis and ion exchange", Brazilian J. Chem. Eng., 27(1), 71-78. https://doi.org/10.1590/S0104-66322010000100006
- Gebicke, W., Armonies, B. and Eckert, B. (2003), "New approaches in high-purity water treatment - 5 years of operating experience with EDI", Ultrapure Water, 20(3), 25-30.
- Gifford, J. and Atnoor, D. (2000), "An innovative approach to continuous electrodeionisation module and system design for power applications", The International Water Conference, Pittsburg, PA, USA, October.
- Grabowski, A., Zhang, G., Strathmann, H. and Eigenberger, G. (2006), "The production of high purity water by continuous electrodeionization with bipolar membranes: Influence of the anion-exchange membrane permselectivity", J. Membr. Sci., 281, 297-306. https://doi.org/10.1016/j.memsci.2006.03.044
- Grabowski, A., Zhang, G., Strathmann, H. and Eigenberger, G. (2008), "Production of high-purity water by continuous electrodeionization with bipolar membranes: Influence of concentrate and protection compartment", Separ. Purif. Technol., 60(1), 86-95. https://doi.org/10.1016/j.seppur.2007.07.052
- Grebenyuk, V., Grebenyuk, O., Sims, K.J., Carson, W.W., MacDonald, R.J. and Zhang, L. (2007), "Spiral electrodeionization device with flow distribution profiling", US Patent: 7,306,709.
- Harada, N., Otomo, T., Watabe, T., Ase, T., Takemura, T. and Sato, T. (2011), "Removal of viable bacteria and endotoxins by electro deionization (EDI)", Biocontrol Sci., 16(3), 109-115. https://doi.org/10.4265/bio.16.109
- Ho, C. and Wood, J. (2006), "Design, construction and operation of a 6,730 gpm RO/CEDI system for Con Edison's East River Repowering Project", The International Water Conference, Pittsburgh, PA, USA, October.
- Ho, T., Kurup, A., Davis, T. and Hestekin, J. (2010), "Wafer chemistry and properties for ion removal by wafer enhanced electrodeionization", Separ. Sci. Technol., 45(4), 433-446. https://doi.org/10.1080/01496390903526709
- Huang, C., Xu, T., Zhang, Y., Xue, Y. and Chen, G. (2007), "Application of electrodialysis to the production of organic acids: state-of-the-art and recent developments", J. Membr. Sci., 288(1-2), 1-12. https://doi.org/10.1016/j.memsci.2006.11.026
- Inoue, H., Tamura, M., Yoshida, S., Nakamura, H. and Yamanaka, K. (2007), "Ion exchanger", US Patent: 7,173,066.
- Jha, A.D. and Gifford, J.D. (2000). "CEDI: Selecting the appropriate configuration", Power Engineering (Barrington, Illinois), 104, 41-42, 44.
- Jones, C.P., Pierce, A. and Roberts, B.R. (2006), "The use of EDI technology to recycle HF acid wastes from scrubbers and thermal treatment units", Ultrapure Water, 23(5), 34-39.
- Kariduraganavar, M.Y., Nagarale, R.K., Kittur, A.A. and Kulkarni, S.S. (2006), "Ion-exchange membranes: preparative methods for electrodialysis and fuel cell applications", Desalination, 197(1-3), 225-246. https://doi.org/10.1016/j.desal.2006.01.019
- Keramati, N., Moheb, A. and Ehsani, M.R. (2010), "Effect of operating parameters on NaOH recovery from waste stream of merox tower using membrane systems: Electrodialysis and electrodeionization processes", Desalination, 259(1-3), 97-102. https://doi.org/10.1016/j.desal.2010.04.027
- Kumar, M., Khan, M.A., Al-Othman, Z.A. and Choong, T.S.Y. (2013), "Recent developments in ion-exchange membranes and their applications in electrochemical processes for in situ ion substitutions, separation and water splitting", Separ. Purif. Rev., 42(3), 187-261. https://doi.org/10.1080/15422119.2012.690360
- Kurup, A.S., Ho, T. and Hestekin, J.A. (2009), "Simulation and optimal design of electrodeionization process: Separation of multicomponent electrolyte solution", Ind. Eng. Chem. Res., 48(20), 9268-9277. https://doi.org/10.1021/ie801906d
- Larchet, C., Zabolotsky, V.I., Pismenskaya, N., Nikonenko, V.V., Tskhay, A., Tastanov, K. and Pourcelly, G. (2008), "Comparison of different ED stack conceptions when applied for drinking water production from brackish waters", Desalination, 222(1-3), 489-496. https://doi.org/10.1016/j.desal.2007.02.067
- Lee, J.W., Yeon, K.H., Song, J.H. and Moon, S.H. (2007), "Characterization of electroregeneration and determination of optimal current density in continuous electrodeionization", Desalination, 207(1-3), 276-285. https://doi.org/10.1016/j.desal.2006.04.070
- Lee, H.J., Hong, M.K. and Moon, S.H. (2012), "A feasibility study on water softening by electrodeionization with the periodic polarity change", Desalination, 284, 221-227. https://doi.org/10.1016/j.desal.2011.09.001
- Lee, H.-J., Song, J.-H. and Moon, S.-H. (2013), "Comparison of electrodialysis reversal (EDR) and electrodeionization reversal (EDIR) for water softening", Desalination, 314, 43-49. https://doi.org/10.1016/j.desal.2012.12.028
- Li, Z., Hernon, B.P. and Bernitz, F.S. (1998), "Electrodeionization adds new dimension to IX, RO", Power, 142(4), 53-56.
- Li, Y.Q., Guan, S. and Tang, E.Q. (2009), "Study on thick cell EDI process for ultra pure water production", J. Tianjin Polytech. Univ., 28(6), 15-18.
-
Li, F.U.Z., Zhang, M., Zhao, X., Hou, T. and Liu, L.I.J. (2010), "Removal of
$Co^{2+}$ and$Sr^{2+}$ from a primary coolant by continuous electrodeionization packed with weak base anion exchange resin", Nuclear Technol., 172(1), 71-76. https://doi.org/10.13182/NT10-A10883 - Li, Q., Huang, C. and Xu, T. (2011), "Alcohol splitting for the production of methyl methoxyacetate: integration of ion-exchange with bipolar membrane electrodialysis", J. Membr. Sci., 367(1-2), 314-318. https://doi.org/10.1016/j.memsci.2010.11.021
- Li, W., Krantz, W.B., Cornelissen, E.R., Post, J.W., Verliefde, A.R.D. and Tang, C.Y. (2013), "A novel hybrid process of reverse electrodialysis and reverse osmosis for low energy seawater desalination and brine management", Appl. Ener., 104, 592-602. https://doi.org/10.1016/j.apenergy.2012.11.064
- Liang, L.S. (2003), "Evolution in design of CEDI Systems", Ultrapure Water, 20(8), 13-17.
- Liang, L.S. and Wang, L. (2001), "Continuous electrodeionization processes for production of ultrapure water", The Semiconductor Pure Water and Chemicals Conference, Monterey, CA, USA, February- March.
- Liang, L.S., Jha, A., Arba, J. and Dupont, S. (2003), "Electrodeionization apparatus and method", US Patent: 6,649,037 B2
- Liang, L.S., Jha, A., Arba, J. and Dupont, S. (2004), "Electrodeionization apparatus and method", US Patent: 6,824,662 B2.
- Liu, F., Zhang, G., Zhang, H. and Mo, J. (2008a), "Performance evaluation of electrodeionization process based on ionic equilibrium with plate and frame modules", Desalination, 221(1-3), 425-432. https://doi.org/10.1016/j.desal.2007.01.102
- Liu, L., Li, F., Zhao, X. and Zhao, G. (2008b), "Low-level radioactive wastewater treatment by continuous electrodeionization", Qinghua Daxue Xuebao/J. Tsinghua Univ., 48(6), 1012-1014.
- Liu, H.R., Wei, J.F., Guan, S., Zhang, H. and Zhao, K.Y. (2011), "Study on EDI technology with ion-exchange fiber for ultra pure water production", J. Tianjin Polytech. Univ., 30(2), 19-22.
- Lounis, A., Setti, L., Djennane, A. and Melikchi, R. (2007), "Separation of molybdenum-uranium by a process combining ion exchange resin and membranes", J. Appl. Sci., 7(14), 1963-1967. https://doi.org/10.3923/jas.2007.1963.1967
- Lu, J., Wang, Y.X. and Zhu, J. (2010), "Numerical simulation of the electrodeionization (EDI) process accounting for water dissociation", Electro. Acta, 55(8), 2673-2686. https://doi.org/10.1016/j.electacta.2009.11.107
-
Lu, H., Wang, J., Bu, S. and Fu, L. (2011), "Influence of resin particle size distribution on the performance of electrodeionization process for
$Ni^{2+}$ removal from synthetic wastewate", Separ. Sci. Technol. 46(3), 404-408. https://doi.org/10.1080/01496395.2010.518197 - Matzan, E., Maitino, P. and Tate, J. (2001), "Deionization: cost reduction and operating results of an RO/EDI treatment system", Ultrapure Water, 18(8), 20-24.
- Meng, H., Peng, C., Song, S. and Deng, D. (2004), "Electro-regeneration mechanism of ion-exchange resins in electrodeionization", Surface Rev. Letters, 11(6), 599-605. https://doi.org/10.1142/S0218625X04006542
- Menzel, T. and Beusshausen, S. (2006), "Improvements of semiconductor water treatment using spiral-wound EDI", Ultrapure Water, 23(4), 31-35.
- Meyer, N., Parker, W.J. and Van Geel, P.J. (2000), "Treatment of nitrate contaminated water by electrodeionization", 2000 Annual Conference-Canadian Society for Civil Engineering, London, Ontario, Canada, June.
- Meyer, N., Parker, W.J., Van Geel, P.J. and Adiga, M. (2005a), "Development of an electrodeionization process for removal of nitrate from drinking water. Part 1: single-species testing", Desalination, 175(2), 153-165. https://doi.org/10.1016/j.desal.2004.07.051
- Meyer, N., Parker, W.J., Van Geel, P.J. and Adiga, M. (2005b), "Development of an electrodeionization process for removal of nitrate from drinking water. Part 2: multi-species testing", Desalination, 175(2), 167-177. https://doi.org/10.1016/j.desal.2004.07.052
- Mir, L. (2001), "High purity electrodeionization", US Patents: 6,254,753 B1.
- Mittal, D. and Nathan, V.J. (2010), "Use of unique fractional electrodeionization in power plant applications", Ultrapure Water, 27(6), 24-32.
- Nagarale, R.K., Gohil, G.S. and Shahi, V.K. (2006), "Recent developments on ion-exchange membranes and electro-membrane processes", Adv. Colloid Interf. Sci., 119(), 97-130. https://doi.org/10.1016/j.cis.2005.09.005
- Noh, B.I., Yoon, T.K. and Moon, B.H. (1996), "The mixed bed ion exchange performances at ultralow concentrations," Korean J. Chem. Eng., 13(2), 150-158. https://doi.org/10.1007/BF02705902
- Osawa, M. and Kato, O. (2002), "Electrodeionization apparatus and pure water producing apparatus", US Patent: 6,379,518.
- Park, J.S., Song, J.H., Yeon, K.H. and Moon, S.H. (2007), "Removal of hardness ions from tap water using electromembrane processes", Desalination, 202(1-3), 1-8. https://doi.org/10.1016/j.desal.2005.12.031
- Parker, R. (2011), "Electrodeionization Evaluation in A Semiconductor Fab Recycle System", Access: November 23, 2011. www.mcilvainecompany.com/Decision_Tree/subscriber/articles/Semiconductor_Electrodeionization.pdf
- Prato, T. and Gallagher, C. (2000), "Using EDI to meet the needs of pure water production", The International Water Conference, Pittsburgh, PA, USA, October.
- Riviello, J.M. and Siriraks, A. (2011), "Electrodeionization: applications of EDI devices in inorganic analysis", Ultrapure Water, 28(6), 10-14.
- Rychen, P., Alonso, S. and Alt, H.P. (1997). "High-purity water production with the latest modular electrodeionization technology", Ultrapure Water, 14, 40-47.
- Salem, E. (2000), "Areas to consider when selecting an EDI system", Ultrapure Water, 17(6), 72-76.
- Salem, K., Sandeaux, J., Molenat, Sandeaux, R. and Gavach, C. (1995), "Elimination of nitrate from drinking water by electrochemical membrane processes", Desalination, 101(2), 123-131. https://doi.org/10.1016/0011-9164(95)00015-T
- Sanz, J., Guerrero, L. and Roca, M. (2006), "Ultrapure water production by a continuous electrodeionization process (CEDI)", Produccion de agua de alta pureza: Electrodesionizacion en continuo (CEDI), 26(269), 48-63.
- Sato, S. (2010), "Apparatus for electrodeionization of water", US Patent: 7,666,288.
- Sato, S. and Takayuki, M. (2004), "Method and apparatus for electrodeionization of water", US Patent: 6,733,646 B2.
- Shinnei, Y. and Kakuda, M. (2001), "Process for producing deionized water by electrodeionization technique", US Patent: 6,248,226.
- Song, J.H., Yeon, K.H., Cho, J. and Moon, S.H. (2005), "Effects of the operating parameters on the reverse osmosis- electrodeionization performance in the production of high purity water", Korean J. Chem. Eng., 22(1), 108-114. https://doi.org/10.1007/BF02701471
- Song, J.H., Yeon, K.H. and Moon, S.H. (2007), "Effect of current density on ionic transport and water dissociation phenomena in a continuous electrodeionization (CEDI)", J. Membr. Sci., 291(1-2), 165-171. https://doi.org/10.1016/j.memsci.2007.01.004
- Souilah, O., Akretche, D.E. and Amara, M. (2004), "Water reuse of an industrial effluent by means of electrodeionisation", Desalination, 167(1-3), 49-54. https://doi.org/10.1016/j.desal.2004.06.112
- Spiegel, E.F., Thompson, P.M., Helden, D.J., Doan, H.V., Gaspar, D.J. and Zanapalidou, H. (1999), "Investigation of an electrodeionization system for the removal of low concentrations of ammonium ions", Desalination, 123, 85-92. https://doi.org/10.1016/S0011-9164(99)00062-4
- Spiegler, K.S. (1966), Principles of Desalination, Academic press, New York, 441.
- Strathmann, H. (2010), "Electrodialysis, a mature technology with a multitude of new applications", Desalination, 264(3), 268-288. https://doi.org/10.1016/j.desal.2010.04.069
- Taghdirian, H.R., Moheb, A. and Mehdipourghazi, M. (2010), "Selective separation of Ni(II)/Co(II) ions from dilute aqueous solutions using continuous electrodeionization in the presence of EDTA", J. Membr. Sci., 362(1-2), 68-75. https://doi.org/10.1016/j.memsci.2010.06.023
- Thate, S., Specogna, N. and Eigenberger, G. (1999), "Electrodeionization: a comparison of different EDI concepts used for the production of high-purity water", Ultrapure Water, 16(8), 42-56.
- Verbeek, H.M., Furst, L. and Neumeister, H. (1998), "Digital simulation of an electrodeionization process", Comput. Chem. Eng., 22(SUPPL.1), S913-S916. https://doi.org/10.1016/S0098-1354(98)00179-3
- Wang, J.Y. (2005), "Research progress and expectation of electrodeionization watertreatment technology", J. Tianjin Polytech. Univ., 24(5), 92-97.
- Wang, J.Y. and Wang, S.C. (2001), "High-purity water production by RO/EDI system", Huagong Xuebao/J. Chem. Ind. Eng. (China), 52(1), 15-16.
- Wang, J., Wang, S. and Jin, M. (2000), "A study of the electrodeionization process high-purity water production with a RO/EDI system", Desalination, 132(1-3), 349-352. https://doi.org/10.1016/S0011-9164(00)00171-5
- Wang, J., Wang, S. and Wang, Y. (2003), "High-purity water production by RO/EDI integrated membrane processes", Fluid - Particle Separ. J., 15(1), 31-35.
- Wang, J., Fan, G., Dong, H., Fei, Z., Chen, W. and Lu, H. (2011), "Recent patents review on electrodeionization", Rec. Patents Chem. Eng., 4(2), 183-198.
- Wen, R., Deng, S. and Zhang, Y. (2005), "The removal of silicon and boron from ultra-pure water by electrodeionization", Desalination, 181(1-3), 153-159. https://doi.org/10.1016/j.desal.2005.02.018
- Wenten, I.G., Khoiruddin, Arfianto, F. and Zudiharto (2013), "Bench scale electrodeionization for high pressure boiler feed water", Desalination, 314, 109-114. https://doi.org/10.1016/j.desal.2013.01.008
- Widiasa, I.N. and Wenten, I.G. (2007), "Combination of reverse osmosis and electrodeionization for simultaneous sugar recovery and salts removal from sugary wastewater", Reaktor, 11(2), 91-97.
- Widiasa, I.N., Sutrisna, P.D. and Wenten, I.G. (2004), "Performance of a novel electrodeionization technique during citric acid recovery", Separ. Purif. Technol., 39(1-2 SPEC. ISS.), 89-97. https://doi.org/10.1016/j.seppur.2003.12.020
- Willis, S. (2008), "Purer, greener water", Chem. Engineer, 804, 38-39.
- Wood, J. (2008), "Power generation: Continuous electrodeionisation for power plants", Filtr. Separ., 45(5), 17-19.
- Wood, J. and Gifford, J. (2002), "Improvements in continuous electrodeionization for power plant applications", The Industrial Water Conference, Orlando, FL, USA, December.
- Wood, J., Hirayama, J. and Satoh, S. (2000), "Hot water sanitization of continuous electrodeionization systems", Pharma. Eng., 20(6), 34-40.
- Wood, J., Westberg, E. and Blackbourn, D. (2003), "Field experience with a new CEDI module design", The International Water Conference, Pittsburgh, PA, USA, October.
- Wood, J., Westberg, E. and Blackbourn, D. (2004), "Field experience with an all-resin-filled CEDI module design", Ultrapure Water, 21(9), 27-32.
- Wood, J., Gifford, J., Arba, J. and Shaw, M. (2010), "Production of ultrapure water by continuous electrodeionization", Desalination, 250(3), 973-976. https://doi.org/10.1016/j.desal.2009.09.084
- www.dowwaterandprocess.com/products/edi/installs.htm, Access: July 21, 2009.
- www.enersave-group.com/2008/downloads/images/pdf/CSM%20Prj%20Cutsheet.pdf, Access: June, 2012.
- www.ges.co.il/files/GES_Power_Generation.pdf, Access: June, 2012.
- www.gewater.com/pdf/Case%20Studies_Cust/Americas/English/CS1055EN.pdf, Access: February 20, 2013.
- www.water.siemens.com/SiteCollectionDocuments/Product_Lines/Ionpure_Products/PEI%20NOV04.pdf, Access: July 24, 2009.
- Xing, Y., Chen, X., Yao, P. and Wang, D. (2009), "Continuous electrodeionization for removal and recovery of Cr(VI) from wastewater", Separ. Purif. Technol., 67(2), 123-126. https://doi.org/10.1016/j.seppur.2009.03.029
- Yeon, K.H. and Moon, S.H. (2003), "A study on removal of cobalt from a primary coolant by continuous electrodeionization with various conducting spacers", Separ. Sci. Technol., 38(10), 2347-2371. https://doi.org/10.1081/SS-120021628
- Yeon, K.H., Song, J.H. and Moon, S.H. (2004b), "Preparation and characterization of immobilized Ion exchange polyurethanes (IEPU) and their applications for continuous electrodeionization (CEDI)", Korean J. Chem. Eng. 21(4), 867-873. https://doi.org/10.1007/BF02705532
- Yeon, K.H., Song, J.H., Kim, J.B. and Moon, S.H. (2004a), "Preparation and characterization of UV-grafted ion-exchange textiles in continuous electrodeionization", J. Chem. Technol. Biotechnol., 79(12), 1395-1404. https://doi.org/10.1002/jctb.1141
- Yoshida, S., Kanazawa, N., Qiu, L., Umeda, M., Uchino, H., Fukuda, J., Aoyagi, M. and Watanabe, T. (2002), "Regeneration mechanism of ion exchange materials in electrodeionization system", Electrochemistry, 70(10), 784-788.
- Yu, P., Lin, J., Henry, M., Hestekin, J., Snyder, S.W. and Martin, E.J. (2006), "Single-stage separation and esterification of cation salt carboxylates using electrodeionization" US Patent: 7,141,154.
Cited by
- Functionalized carbon nanotube (CNT) membrane: progress and challenges vol.7, pp.81, 2017, https://doi.org/10.1039/C7RA08570B
- Analysis of newly designed CDI cells by CFD and its performance comparison vol.7, pp.2, 2016, https://doi.org/10.12989/mwt.2016.7.2.115
- Reverse osmosis applications: Prospect and challenges vol.391, 2016, https://doi.org/10.1016/j.desal.2015.12.011
- Flue gas carbon capture using hollow fiber membrane diffuser-separator vol.285, 2018, https://doi.org/10.1088/1757-899X/285/1/012010
- Surface modification of ion-exchange membranes: Methods, characteristics, and performance vol.134, pp.48, 2017, https://doi.org/10.1002/app.45540
- Beverage dealcoholization processes: Past, present, and future vol.71, 2018, https://doi.org/10.1016/j.tifs.2017.10.018
- Mathematical Model for Numerical Simulation of Organic Compound Recovery Using Membrane Separation vol.41, pp.2, 2018, https://doi.org/10.1002/ceat.201700445
- Adsorptive separation of adipic acid from aqueous solutions by perlite or its composites by manganese or copper vol.5, pp.4, 2014, https://doi.org/10.12989/mwt.2014.5.4.295
- Ceramic membrane ozonator for soluble organics removal from produced water vol.285, 2018, https://doi.org/10.1088/1757-899X/285/1/012012
- Membrane separation for non-aqueous solution vol.285, 2018, https://doi.org/10.1088/1757-899X/285/1/012008
- Preparation and characterization of polysulfone/PEG heterogeneous ion exchange membrane for reverse electrodialysis (RED) vol.877, 2017, https://doi.org/10.1088/1742-6596/877/1/012075
- Heterogeneous structure and its effect on properties and electrochemical behavior of ion-exchange membrane vol.4, pp.2, 2017, https://doi.org/10.1088/2053-1591/aa5cd4
- Progress on Zeolite-membrane-aided Organic Acid Esterification vol.214, 2017, https://doi.org/10.1088/1757-899X/214/1/012012
- LTA zeolite membranes: current progress and challenges in pervaporation vol.7, pp.47, 2017, https://doi.org/10.1039/C7RA03341A
- Hydrogenation of Maltose in Catalytic Membrane Reactor for Maltitol Production vol.156, pp.2261-236X, 2018, https://doi.org/10.1051/matecconf/201815608008
- The effect of heterogeneity in ion-exchange membrane structure on Donnan Exclusion vol.1090, pp.1742-6596, 2018, https://doi.org/10.1088/1742-6596/1090/1/012045
- Metal Oxide based Antibacterial Membrane vol.395, pp.1757-899X, 2018, https://doi.org/10.1088/1757-899X/395/1/012021
- permeance in the application of CO2/N2 separation pp.1525-6111, 2018, https://doi.org/10.1080/03602559.2018.1520253
- Simulation of Nonporous Polymeric Membranes Using CFD for Bioethanol Purification vol.27, pp.3, 2018, https://doi.org/10.1002/mats.201700084
- Superhydrophobic membrane: progress in preparation and its separation properties vol.35, pp.2, 2019, https://doi.org/10.1515/revce-2017-0030
- ε-polylysine biopolymer for coagulation of clay suspensions vol.12, pp.5, 2014, https://doi.org/10.12989/gae.2017.12.5.753
- Combined ultrafiltration-electrodeionization technique for production of high purity water vol.75, pp.12, 2017, https://doi.org/10.2166/wst.2017.173
- Modified membrane with antibacterial properties vol.8, pp.5, 2017, https://doi.org/10.12989/mwt.2017.8.5.463
- Characterization of MK-40 Membrane Modified by Layers of Cation Exchange and Anion Exchange Polyelectrolytes vol.10, pp.2, 2014, https://doi.org/10.3390/membranes10020020
- Electrodeionization theory, mechanism and environmental applications. A review vol.18, pp.4, 2014, https://doi.org/10.1007/s10311-020-01006-9
- Ionic Separation in Electrodeionization System: Mass Transfer Mechanism and Factor Affecting Separation Performance vol.49, pp.4, 2014, https://doi.org/10.1080/15422119.2019.1608562
- Graphene Oxide-Based Nanofiltration for Hg Removal from Wastewater: A Mini Review vol.11, pp.4, 2021, https://doi.org/10.3390/membranes11040269
- A Review on Promising Membrane Technology Approaches for Heavy Metal Removal from Water and Wastewater to Solve Water Crisis vol.13, pp.22, 2014, https://doi.org/10.3390/w13223241
- A review on recent advances in electrodeionization for various environmental applications vol.289, pp.None, 2022, https://doi.org/10.1016/j.chemosphere.2021.133223