Separation of paramagnetic and diamagnetic gases

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k

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55 16, 55 68, 55 3, 55158, 505701, 505700, H01B 1200

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051623013

ABSTRACT:
The invention relates to a new method for the separation of gaseous paramagnetic species from diamagnetic or weakly paramagnetic gaseous species by contacting the mixture of such species with a high Tc superconductive material in permeable form, so that one of the species is enriched respective of the other one by permeation through such porous barrier.

REFERENCES:
patent: 4704139 (1987-11-01), Yamamoto et al.
Orientation Dependent X-Ray Absorption Near Edge Structure in YBa.sub.2 Cu.sub.3 O.sub.7 and La.sub.1.85 Sr.sub.0.15 CuO.sub.4 Material Resource Soc. Symp Proc vol. 99 1988 Materials Research Society pp. 757-759.
The Condensed Chem. Dict. Tenth Edition Gressner G. Hawley published Van Nostrand Reinhold Co NYC, Oct. 25, 1981.
S. Reich et al., Nature, vol. 338, pp. 330,332, "Separation of Paramagnetic and Diamagnetic Molecules Using High-Tc Superconducting Ceramics", Mar. 23, 1989.
Patent Abstracts of Japan, vol. 13, No. 119 (C-579)[3467], Mar. 23, 1989; JP-A-63 291 621 Nov. 29, 1988.
Patent Abstracts of Japan, No. 142 (C-441), p. 142 C 441; JP-A-62 61 655 (Mar. 18, 1987).
"Separation of Paramagnetic and Diamagnetic Molecules Using High-T Superconducting Ceramics", reprinted from Nature, vol. 338, No. 6213, pp. 330-332, Mar. 23, 1989, authors Shimon Reich & Israel Cabasso, Macmillan Magazines Ltd., 1989.

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