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Method and device for separation of an isotope mixture of hydrogen, existing predominantly in molecular and/or bound form in a gas containing free materials and/or other materials in composition, from the remaining components of the gas
Method and device for separation of an isotope mixture of hydrogen, existing predominantly in molecular and/or bound form in a gas containing free materials and/or other materials in composition, from the remaining components of the gas
A method and apparatus for separation of an isotope mixture of hydrogen, sting predominantly in molecular form and/or inbound form, from the remaining components of a gas. A first chamber is separated from a second chamber by a wall which is permeable for atomic hydrogen and less permeable for molecular hydrogen. The hydrogen is converted into atomic hydrogen or, if necessary, is separated in atomic form from the material with which the hydrogen has gone into chemical composition. A device electrically operable independently of the wall is provided for converting the molecular and/or bound hydrogen to form atomic hydrogen in apparatus for this purpose. A heating device for elevating the temperature of thread, wire, or body of other form capable of being heated above 1500 K is provided and such thread, wire, or body is made of high-melting material, such as tungsten, iridium, osmium, or rhenium. The permeable wall of material differing from palladium consists of iron, steel or nickel as well as nickel-base alloys.
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