Inorganic Anion Exchange Membrane Prepared from Hydrotalcite Like Compounds

Inorganic anion exchange membranes were prepared from the powdered hydrotalcite like materials as anion exchangers and polyvinylidene fluoride as a binder for the membrane fablication. Following hydrotalcite like materials (combination of di- and tri-valent metal ions) were prepared, Mg (II) -Al (II...

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Published inJournal of Ion Exchange Vol. 5; no. 2; pp. 32 - 39
Main Authors IURA, Katsuhiko, KOGURE, Makoto, KANZAKI, Yasushi, TANAKA, Tatsuo
Format Journal Article
LanguageEnglish
Published Japan Society of Ion Exchange 1994
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Abstract Inorganic anion exchange membranes were prepared from the powdered hydrotalcite like materials as anion exchangers and polyvinylidene fluoride as a binder for the membrane fablication. Following hydrotalcite like materials (combination of di- and tri-valent metal ions) were prepared, Mg (II) -Al (III), Ni (II) -Al (III), and Co (II) -Al (III) systems. Each powdered material was dispersed in dimethylkformamide solution of polyvinylidene fluoride and spreaded on a glass dish to form a membrane. The electric resistance measured was ranging 200-700 Ω⋅cm-2 and 80-150 Ω⋅cm-2 at 25°C and 80°C, respectively. The plots of membrane potential vs. log of NaCl activity were linear between 10-3 -1 mol⋅dm-3. The transport numbers for Cl- ions were around 0.94 at 80°C which approached 0.99 for the comercially available organic anion exchange membrane. The thermal stability was superior to that of organic anion exchage membrane.
AbstractList Inorganic anion exchange membranes were prepared from the powdered hydrotalcite like materials as anion exchangers and polyvinylidene fluoride as a binder for the membrane fablication. Following hydrotalcite like materials (combination of di- and tri-valent metal ions) were prepared, Mg (II) -Al (III), Ni (II) -Al (III), and Co (II) -Al (III) systems. Each powdered material was dispersed in dimethylkformamide solution of polyvinylidene fluoride and spreaded on a glass dish to form a membrane. The electric resistance measured was ranging 200-700 Ω⋅cm-2 and 80-150 Ω⋅cm-2 at 25°C and 80°C, respectively. The plots of membrane potential vs. log of NaCl activity were linear between 10-3 -1 mol⋅dm-3. The transport numbers for Cl- ions were around 0.94 at 80°C which approached 0.99 for the comercially available organic anion exchange membrane. The thermal stability was superior to that of organic anion exchage membrane.
Author TANAKA, Tatsuo
KOGURE, Makoto
IURA, Katsuhiko
KANZAKI, Yasushi
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  fullname: TANAKA, Tatsuo
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Title Inorganic Anion Exchange Membrane Prepared from Hydrotalcite Like Compounds
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