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Electrodialytic Processes

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Electrodialytic Processes ( electrodialytic-processes )

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Membranes 2020, 10, 221 64 of 72 166. Ghyselbrecht,K.;Sansen,B.;Monballiu,A.;Ye,Z.-L.;Pinoy,L.;Meesschaert,B.Cationicselectrodialysisfor magnesium recovery from seawater on lab and pilot scale. Sep. Purif. Technol. 2019, 221, 12–22. [CrossRef] 167. Chen,B.;Jiang,C.;Wang,Y.;Fu,R.;Liu,Z.;Xu,T.Selectrodialysiswithbipolarmembraneforthereclamation of concentrated brine from RO plant. Desalination 2018, 442, 8–15. [CrossRef] 168. Qiu,Y.;Yao,L.;Tang,C.;Zhao,Y.;Zhu,J.;Shen,J.Integrationofselectrodialysisandselectrodialysiswith bipolar membrane to salt lake treatment for the production of lithium hydroxide. Desalination 2019, 465, 1–12. [CrossRef] 169. Jiang,C.;Zhang,D.;Muhammad,A.S.;Hossain,M.M.;Ge,Z.;He,Y.;Feng,H.;Xu,T.Foulingdeposition as an effective approach for preparing monovalent selective membranes. J. Membr. Sci. 2019, 580, 327–335. [CrossRef] 170. Liao,J.;Chen,Q.;Pan,N.;Yu,X.;Gao,X.;Shen,J.;Gao,C.Amphotericblendion-exchangemembranes for separating monovalent and bivalent anions in electrodialysis. Sep. Purif. Technol. 2020, 242, 116793. [CrossRef] 171. Sadyrbaeva, T.Z. Hybrid liquid membrane—Electrodialysis process for extraction of manganese(II). Desalination 2011, 274, 220–225. [CrossRef] 172. Nghiem,L.;Mornane,P.;Potter,I.;Perera,J.;Cattrall,R.;Kolev,S.Extractionandtransportofmetalions and small organic compounds using polymer inclusion membranes (PIMs). J. Membr. Sci. 2006, 281, 7–41. [CrossRef] 173. Zhao,Z.;Liu,G.;Jia,H.;He,L.Sandwichedliquid-membraneelectrodialysis:Lithiumselectiverecovery from salt lake brines with high Mg/Li ratio. J. Membr. Sci. 2020, 596, 117685. [CrossRef] 174. Almeida,M.I.G.S.;Cattrall,R.W.;Kolev,S.D.Recenttrendsinextractionandtransportofmetalionsusing polymer inclusion membranes (PIMs). J. Membr. Sci. 2012, 415–416, 9–23. [CrossRef] 175. Wang,B.-Y.;Zhang,N.;Li,Z.-Y.;Lang,Q.-L.;Yan,B.-H.;Liu,Y.;Zhang,Y.SelectiveSeparationofAceticand Hexanoic Acids across Polymer Inclusion Membrane with Ionic Liquids as Carrier. Int. J. Mol. Sci. 2019, 20, 3915. [CrossRef] 176. Almeida,M.I.G.S.;Cattrall,R.W.;Kolev,S.D.Polymerinclusionmembranes(PIMs)inchemicalanalysis—A review. Anal. Chim. Acta 2017, 987, 1–14. [CrossRef] 177. See, H.H.; Hauser, P.C. Electric Field-Driven Extraction of Lipophilic Anions across a Carrier-Mediated Polymer Inclusion Membrane. Anal. Chem. 2011, 83, 7507–7513. [CrossRef] 178. Wang, B.; Li, Z.; Lang, Q.; Tan, M.; Ratanatamskul, C.; Lee, M.; Liu, Y.; Zhang, Y. A comprehensive investigation on the components in ionic liquid-based polymer inclusion membrane for Cr(VI) transport during electrodialysis. J. Membr. Sci. 2020, 604, 118016. [CrossRef] 179. Zhang,N.;Liu,Y.;Liu,R.;She,Z.;Tan,M.;Mao,D.;Fu,R.;Zhang,Y.Polymerinclusionmembrane(PIM) containing ionic liquid as a proton blocker to improve waste acid recovery efficiency in electrodialysis process. J. Membr. Sci. 2019, 581, 18–27. [CrossRef] 180. Hoshino,T.Preliminarystudiesoflithiumrecoverytechnologyfromseawaterbyelectrodialysisusingionic liquid membrane. Desalination 2013, 317, 11–16. [CrossRef] 181. Li,Z.;Liu,Y.;Wang,B.;Lang,Q.;Tan,M.;Lee,M.;Peng,C.;Zhang,Y.Insightsintothefacilitatedtransport mechanisms of Cr(VI) in ionic liquid-based polymer inclusion membrane—Electrodialysis (PIM-ED) process. Chem. Eng. J. 2020, 397, 125324. [CrossRef] 182. Frenzel, I.; Holdik, H.; Stamatialis, D.F.; Pourcelly, G.; Wessling, M. Chromic acid recovery by electro-electrodialysis. Sep. Purif. Technol. 2005, 47, 27–35. [CrossRef] 183. Norman,J.H.;Basenbruch,G.E.;O’keefe,D.R.ThermochemicalWater-SplittingforHydrogenProduction.Final Report 1 Jan 75–31 Dec 80 [Sulfur-Iodine Cycle]; General Atomic Co.: San Diego, CA, USA, 1981. 184. Kasahara,S.;Hwang,G.-J.;Nakajima,H.;Choi,H.-S.;Onuki,K.;Nomura,M.EffectsofProcessParameters of the IS Process on Total Thermal Efficiency to Produce Hydrogen from Water. J. Chem. Eng. Jpn. 2003, 36, 887–899. [CrossRef] 185. Caputo, G.; Balog, I.; Giaconia, A.; Sau, S.; Pozio, A. Experimental Study for HIx Concentration by Electro-Electrodialysis (EED) Cells in the Water Splitting Sulfur-Iodine Thermochemical Cycle. ChemEngineering 2019, 3, 50. [CrossRef] 186. Duan,X.;Wang,C.;Wang,T.;Xie,X.;Zhou,X.;Ye,Y.Apolysulfone-basedanionexchangemembranefor phosphoric acid concentration and purification by electro-electrodialysis. J. Membr. Sci. 2018, 552, 86–94. [CrossRef]

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