Helium and Hydrogen Isotope Adsorption and Separation in Metal-Organic Frameworks

Helium and Hydrogen Isotope Adsorption and Separation in Metal-Organic Frameworks
Author: Ingrid Zaiser
Publisher: Cuvillier Verlag
Total Pages: 200
Release: 2016-10-31
Genre: Science
ISBN: 3736983778

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The separation of isotopes has always been a challenge because of their identical size, shape and thermodynamic properties. Nowadays, the extraction of deuterium is performed e.g. by the Girdler Sulfid process or cryogenic distillation, which lead to low separation factors (below 2.5) in combination with high energy costs. The standard way to produce helium-3 is to skim it as a byproduct of the radioactive tritium decay. In this thesis, two alternative approaches have been investigated for the separation of light isotopes, Quantum Sieving and Chemical Affinity Sieving . While Quantum Sieving is based on confinement in small pores, Chemical Affinity Sieving relies on strong adsorption sites. Both methods use the mass difference of the isotopes, which is related to their zero-point energy. The microporous metal-organic frameworks are excellent candidates for studying these quantum effects due to their well-defined pore structure and the possibility to introduce strong adsorption sites directly into the framework. The samples have been exposed to an isotope mixture and the adsorbed quantity of each isotope was detected by low-temperature thermal desorption spectroscopy (TDS). The ratio of the desorbed amount of the isotopes leads directly to the selectivity (separation factor). The selectivity is determined as a function of exposure time and temperature and exhibits the highest value of 25 observed for hydrogen isotopes at temperatures well above the boiling point of liquid nitrogen.


Helium and Hydrogen Isotope Adsorption and Separation in Metal-Organic Frameworks
Language: en
Pages: 200
Authors: Ingrid Zaiser
Categories: Science
Type: BOOK - Published: 2016-10-31 - Publisher: Cuvillier Verlag

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The separation of isotopes has always been a challenge because of their identical size, shape and thermodynamic properties. Nowadays, the extraction of deuteriu
Hydrogen Isotope Separation in Metal-Organic Frameworks
Language: en
Pages: 63
Authors: Naiyuan Zhang
Categories: Deuterium
Type: BOOK - Published: 2018 - Publisher:

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In this thesis we present our research on hydrogen isotope separation using metal-organic frameworks (MOFs). Deuterium is one of the two stable isotopes of hydr
A Gas Flow-Through System for Hydrogen Isotopic Separation with Metal-Organic Frameworks
Language: en
Pages: 47
Authors: Katharine Harp Rigdon
Categories: Carbon dioxide
Type: BOOK - Published: 2019 - Publisher:

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In this thesis, we designed and built a gas flow-through system to study dynamic adsorption separation of hydrogen isotopes in metal-organic frameworks (MOFs).
Overtone Spectroscopy of Hydrogen in MOF-5
Language: en
Pages: 70
Authors: Jocienne N. Nelson
Categories: Hydrogen
Type: BOOK - Published: 2014 - Publisher:

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Metal-Organic Frameworks, or MOFs, are an exciting class of nanoporous crystalline materials with applications that include hydrogen storage and hydrogen isotop
Gas Adsorption in Metal-Organic Frameworks
Language: en
Pages: 530
Authors: T. Grant Glover
Categories: Technology & Engineering
Type: BOOK - Published: 2018-09-03 - Publisher: CRC Press

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This text discusses the synthesis, characterization, and application of metal-organic frameworks (MOFs) for the purpose of adsorbing gases. It provides details