1982Chemical Engineering CommunicationsRequires access

SEPARATION OF HYDROGEN ISOTOPES VIA SINGLE COLUMN PRESSURE SWING ADSORPTION†

Y. W. Wong, F. Hill

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Abstract

An experimental study of the separation of gaseous isotopic species of hydrogen was conducted using a single column pressure swing adsorption process. Vanadium monohydride served as the solid phase and the feed was hydrogen containing a trace of HT. The separations observed were shown to be controlled by a kinetic isotope effect. Comparisons were made with other cyclic separation processes employing vanadium hydride.

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An experimental study of the separation of gaseous isotopic species of hydrogen was conducted using a single column pressure swing adsorption process. Vanadium monohydride served as the solid phase and the feed was hydrogen containing a trace of HT. The separations observed were shown to be controlled by a kinetic isotope effect. Comparisons were made with other cyclic separation processes employing vanadium hydride.

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Available abstract

An experimental study of the separation of gaseous isotopic species of hydrogen was conducted using a single column pressure swing adsorption process. Vanadium monohydride served as the solid phase and the feed was hydrogen containing a trace of HT. The separations observed were shown to be controlled by a kinetic isotope effect. Comparisons were made with other cyclic separation processes employing vanadium hydride.

Key concepts: Pressure swing adsorption, Vanadium, Hydrogen, Isotope separation, Adsorption, Vacuum swing adsorption, Chemistry, Swing

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